SANYO Chemical Industries, Ltd.

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1.

SOLID EMULSIFIER FOR OIL-IN-WATER TYPE EMULSION, PRODUCTION METHOD OF OIL-IN-WATER TYPE EMULSION, OIL-IN-WATER TYPE EMULSION AND COSMETIC COMPOSITION

      
Application Number JP2023033360
Publication Number 2024/058214
Status In Force
Filing Date 2023-09-13
Publication Date 2024-03-21
Owner
  • SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
  • ADMATECHS CO., LTD. (Japan)
Inventor
  • Hamano, Kosuke
  • Nakamura, Yasushi
  • Ono, Yuji
  • Hori, Kenta
  • Inoue, Nao

Abstract

The purpose of the present invention is to provide a solid emulsifier for an oil-in-water type emulsion, the solid emulsifier being for producing an oil-in-water type emulsion that has little squeakiness and good feel when used as a cosmetic, a production method of an oil-in-water type emulsion, and an oil-in-water type emulsion. A solid emulsifier for an oil-in-water type emulsion, the solid emulsifier containing metal oxide particles that have a volume-average particle diameter of 0.2-0.4 μm, a specific surface area of 5-20 m2/g and a degree of hydrophobicity specified in the present invention of 5-35.

IPC Classes  ?

  • A61K 8/25 - Silicon; Compounds thereof
  • A61K 8/06 - Emulsions
  • A61Q 1/00 - Make-up preparations; Body powders; Preparations for removing make-up
  • A61Q 19/00 - Preparations for care of the skin

2.

ESOPHAGUS-COOLING AGENT

      
Application Number JP2022029643
Publication Number 2024/028975
Status In Force
Filing Date 2022-08-02
Publication Date 2024-02-08
Owner
  • SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
  • NATIONAL UNIVERSITY CORPORATION KOBE UNIVERSITY (Japan)
Inventor
  • Somamoto, Satoshi
  • Kiuchi, Kunihiko

Abstract

The purpose of the present invention is to provide an esophagus-cooling agent capable of cooling the esophagus by a simple and easy means with a relatively small burden on a patient. The present invention pertains to an esophagus-cooling agent comprising a solvent and a compound (A). At least a portion of the compound (A) is a non-dissolved material that is not dissolved in the solvent when the esophagus-cooling agent is at 25°C. When differential scanning calorimetry (DSC) is performed on the esophagus-cooling agent in accordance with JIS K7122-2012, an endothermic signal that has a negative DDSC (value obtained by differentiating a heat flow by temperature) in a region where the temperature is in the range of 10-50°C and where the heat flow is at most 0 (W/g) can be observed, and the dynamic viscosity at 25°C is 100-5,000 mm2/s.

IPC Classes  ?

  • A61L 31/06 - Macromolecular materials obtained otherwise than by reactions only involving carbon-to-carbon unsaturated bonds
  • A61L 31/14 - Materials characterised by their function or physical properties
  • A61P 1/04 - Drugs for disorders of the alimentary tract or the digestive system for ulcers, gastritis or reflux esophagitis, e.g. antacids, inhibitors of acid secretion, mucosal protectants

3.

WATER-ABSORBENT RESIN COMPOSITION FOR PLANT CULTIVATION

      
Application Number JP2023026926
Publication Number 2024/024706
Status In Force
Filing Date 2023-07-24
Publication Date 2024-02-01
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Yoshimoto,ryo
  • Kasuya,kazuhiro

Abstract

The present invention is a water-absorbent resin composition for plant cultivation comprising a cross-linked copolymer (B) that contains, as essential constituent units, a (meth)acrylic acid and/or (meth)acrylic acid salt (b1), and a (meth)acrylamide (b2). Calcium ion content is 5.0-80.0 mg per 1.0 g of dry weight of the composition. The calcium ion absorption amount is 7.0 mg to less than 76.0 mg per 1.0 g of dry weight of the composition. The present invention makes it possible to provide a water-absorbent resin composition for plant cultivation that achieves both water-absorbent properties (particularly water retention) and plant growth promoting properties, and that also has high resistance to soil environments.

IPC Classes  ?

  • A01G 24/35 - Growth substrates; Culture media; Apparatus or methods therefor based on or containing synthetic organic compounds containing water-absorbing polymers

4.

AQUEOUS DISPERSION FOR MOISTURE-PERMEABLE WATERPROOF MATERIAL, AND METHOD FOR PRODUCING SAME

      
Application Number JP2023027300
Publication Number 2024/024812
Status In Force
Filing Date 2023-07-26
Publication Date 2024-02-01
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Sharyo, Kohei
  • Inoue, Hirofumi

Abstract

This aqueous dispersion for a moisture-permeable waterproof material contains composite resin particles (C) including a polyurethane resin (U) and a vinyl resin (V), wherein the polyurethane resin (U) is a reaction product of an active hydrogen component (a), a polyisocyanate component (b), and a chain extender (d), said active hydrogen component (a) including a polyol (a3) that has at least two hydroxyl groups and has an alkoxy polyoxyethylene chain.

IPC Classes  ?

  • C08F 2/44 - Polymerisation in the presence of compounding ingredients, e.g. plasticisers, dyestuffs, fillers
  • C08F 283/00 - Macromolecular compounds obtained by polymerising monomers on to polymers provided for in subclass
  • C08G 18/00 - Polymeric products of isocyanates or isothiocyanates
  • C08G 18/40 - High-molecular-weight compounds
  • C08G 18/42 - Polycondensates having carboxylic or carbonic ester groups in the main chain
  • C08G 18/48 - Polyethers
  • C08G 18/66 - Compounds of groups , , or

5.

SMELL MEASUREMENT DEVICE, SENSOR ELEMENT, AND METHODS FOR MANUFACTURING SAME

      
Application Number JP2023025532
Publication Number 2024/014446
Status In Force
Filing Date 2023-07-11
Publication Date 2024-01-18
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor Kanazawa, Gaku

Abstract

Provided are: a smell measurement device capable of outputting a stable measurement result; a sensor element; and methods for manufacturing same. A smell measurement device (100) includes a plurality of sensor elements (31) each comprising: an electrode (313) having a first metal wiring (313A) and a second metal wiring (313B); and a smell substance reception layer (315) in contact with at least a part of the first metal wiring (313A) and at least a part of the second metal wiring (313B). The smell substance reception layer (315) includes a resin composition. The resin composition includes a silicon resin comprising a T unit (R13/23/2) and a D unit (R122/22/2 and a filler. R1 is a monovalent hydrocarbon group having 1-10 carbon atoms.

IPC Classes  ?

  • G01N 27/12 - Investigating or analysing materials by the use of electric, electrochemical, or magnetic means by investigating impedance by investigating resistance of a solid body in dependence upon reaction with a fluid
  • G01N 5/02 - Analysing materials by weighing, e.g. weighing small particles separated from a gas or liquid by absorbing or adsorbing components of a material and determining change of weight of the adsorbent, e.g. determining moisture content
  • G01N 27/04 - Investigating or analysing materials by the use of electric, electrochemical, or magnetic means by investigating impedance by investigating resistance

6.

SURFACTANT COMPOSITION AND CLEANING AGENT

      
Application Number JP2023022763
Publication Number 2024/009754
Status In Force
Filing Date 2023-06-20
Publication Date 2024-01-11
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor Morita, Mika

Abstract

The present invention relates to a surfactant composition that contains an alkyl hydroxy ether acetic acid (salt) (A) represented by general formula (1) and an alkyl hydroxy ether acetic acid (salt) (B) represented by general formula (2) in which the total weight ratio of the alkyl hydroxy ether acetic acid and salt thereof (B) is 0.05-1 wt% relative to the total weight of the alkyl hydroxy ether acetic acid and salt thereof (A). R1222COOM1(1) [In the formula, R1represents a C8-12 alkyl group and M1represents a hydrogen atom, a sodium atom, a potassium atom, or triethanolammonium.] R2-O-CH(X1)CH(X222COOM2(2) [In the formula, one of X1and X2is a hydrogen atom and the other is a C8-12 alkyl group, R2is a hydroxyalkyl group in which any one hydrogen atom that bonds to a carbon atom bonded to the carbon atom of position number 1 in a C10-14 alkyl group has been substituted by a hydroxyl group, the number of carbon atoms in R2is n+2 when the number of carbon atoms in the C8-12 alkyl group represented by X1or X2is n, and M2 represents a hydrogen atom, a sodium atom, a potassium atom, or triethanolammonium.]

IPC Classes  ?

  • A61Q 1/14 - Preparations for removing make-up
  • A61Q 19/10 - Washing or bathing preparations
  • C11D 1/06 - Ether- or thioether carboxylic acids
  • A61Q 5/02 - Preparations for cleaning the hair
  • A61K 8/36 - Carboxylic acids; Salts or anhydrides thereof
  • C09K 23/44 - Ether carboxylic acids

7.

VISCOSITY INDEX IMPROVER COMPOSITION AND LUBRICATING OIL COMPOSITION

      
Application Number JP2023022777
Publication Number 2024/004763
Status In Force
Filing Date 2023-06-20
Publication Date 2024-01-04
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Naito, Nobuhiro
  • Kiguchi, Shinnosuke
  • Torii, Naohiro
  • Ogata, Kazuki
  • Sugiyama, Yoshimitsu

Abstract

This viscosity index improver composition for a lubricating oil composition containing a phosphate ester (C), the viscosity index improver composition containing: a (co)polymer (A) having a monomer (a) represented by general formula (1) as an essential constituent monomer; and a chain aliphatic alcohol (B) having an HLB value of 2.5 to 7.0, wherein the (co)polymer (A) has a solubility parameter of 9.00 to 9.80 (cal/cm3)1/2. (R1is a hydrogen atom or a methyl group; –X1– is a group represented by –O– or –NH–; R2is a C2-4 alkylene group; R3is a C1-17 linear or branched alkyl group; p is an integer of 0–20; and when p is 2 or greater, R2 may be the same or different.)

IPC Classes  ?

  • C10M 169/04 - Mixtures of base-materials and additives
  • C10M 105/74 - Lubricating compositions characterised by the base-material being a non-macromolecular organic compound containing phosphorus
  • C10M 129/06 - Hydroxy compounds having hydroxy groups bound to acyclic or cycloaliphatic carbon atoms
  • C10M 145/14 - Acrylate; Methacrylate
  • C10M 149/06 - Macromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds containing monomers having an unsaturated radical bound to an amido or imido group
  • C10N 20/02 - Viscosity; Viscosity index
  • C10N 20/04 - Molecular weight; Molecular weight distribution
  • C10N 30/02 - Pour-point; Viscosity index
  • C10N 40/08 - Hydraulic fluids, e.g. brake-fluids

8.

ACIDIC GAS ABSORBENT PRODUCTION METHOD AND ACIDIC GAS RECOVERY METHOD

      
Application Number JP2023018910
Publication Number 2023/248669
Status In Force
Filing Date 2023-05-22
Publication Date 2023-12-28
Owner
  • SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
  • NIHON UNIVERSITY (Japan)
  • TOYO ENGINEERING CORPORATION (Japan)
Inventor
  • Takeda, Takuma
  • Manbo, Akihiro
  • Kodama, Daisuke
  • Sasaki, Masakazu

Abstract

A method for producing an acidic gas absorbent containing a compound represented by general formula (1), the method comprising a step for mixing: a composition mixture of an acidic gas and a compound represented by general formula (1); and at least one protic solvent selected from the group consisting of water and alcohols having 1-3 carbon atoms and optionally having a substituent group. [In general formula (1), R1-R4each independently represent a hydrogen atom or an alkyl group having 1-6 carbon atoms, and X- represents an anion of a saturated aliphatic monocarboxylic acid having 2-6 carbon atoms.]

IPC Classes  ?

  • B01D 53/14 - Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases or aerosols by absorption
  • C01B 32/50 - Carbon dioxide

9.

VISCOSITY INDEX IMPROVER COMPOSITION AND LUBRICATING OIL COMPOSITION

      
Application Number JP2023018073
Publication Number 2023/238603
Status In Force
Filing Date 2023-05-15
Publication Date 2023-12-14
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Takenoshita, Yuichi
  • Matsumoto, Satoshi
  • Ueno, Kazushi
  • Yamazaki, Kenji
  • Yamashita, Hiroki

Abstract

The purpose of the present invention is to provide a viscosity index improver composition that will not easily develop into a gel. The present invention pertains to a viscosity index improver composition comprising: a copolymer (A) containing, as essential constituent monomers, a polyolefin-based monomer (a) represented by general formula (1) and a (meth)acrylic acid alkyl ester (b) having a C1-C4 alkyl group; and a Fischer-Tropsch derived base oil (B) having a kinematic viscosity at 100°C of 4.0 mm2/s or less. Based on the total weight of the monomers constituting the copolymer (A), the content of the monomer (a) is 1-20 wt% and the content of the (meth)acrylic acid alkyl ester (b) is 45-85 wt%.

IPC Classes  ?

  • C10M 145/14 - Acrylate; Methacrylate
  • C10M 101/02 - Petroleum fractions
  • C10M 105/04 - Well-defined hydrocarbons aliphatic
  • C10M 105/32 - Esters
  • C10M 107/02 - Hydrocarbon polymers; Hydrocarbon polymers modified by oxidation
  • C10M 149/06 - Macromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds containing monomers having an unsaturated radical bound to an amido or imido group
  • C10N 20/00 - Specified physical properties of component of lubricating compositions
  • C10N 20/02 - Viscosity; Viscosity index
  • C10N 20/04 - Molecular weight; Molecular weight distribution
  • C10N 30/00 - Specified physical or chemical property which is improved by the additive characterising the lubricating composition, e.g. multifunctional additives
  • C10N 40/04 - Oil-bath; Gear-boxes; Automatic transmissions; Traction drives
  • C10N 40/06 - Instruments or other precision apparatus, e.g. damping fluids
  • C10N 40/08 - Hydraulic fluids, e.g. brake-fluids
  • C10N 40/25 - Internal-combustion engines

10.

COATED PARTICLES FOR COSMETIC

      
Application Number JP2023020991
Publication Number 2023/238859
Status In Force
Filing Date 2023-06-06
Publication Date 2023-12-14
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Hamano, Kosuke
  • Nakamura, Yasushi

Abstract

The purpose of the present invention is to provide coated particles for a cosmetic, the coated particles being highly hydrophobic and giving a good feeling if used in a cosmetic. The present invention relates to coated particles for a cosmetic. At least a portion of the surface of cellulose particles or starch particles is coated by a coating layer that contains an ester compound (A) of a C8-28 fatty acid and a sugar compound resulting from bonding of two or more monosaccharides.

IPC Classes  ?

  • A61K 8/73 - Polysaccharides
  • A61K 8/02 - Cosmetics or similar toiletry preparations characterised by special physical form
  • A61K 8/25 - Silicon; Compounds thereof
  • A61Q 1/00 - Make-up preparations; Body powders; Preparations for removing make-up
  • A61Q 1/14 - Preparations for removing make-up
  • A61Q 5/00 - Preparations for care of the hair
  • A61Q 5/02 - Preparations for cleaning the hair
  • A61Q 15/00 - Anti-perspirants or body deodorants
  • A61Q 17/04 - Topical preparations for affording protection against sunlight or other radiation; Topical sun tanning preparations
  • A61Q 19/10 - Washing or bathing preparations

11.

MICROBIOTA IMPROVING AGENT

      
Application Number JP2023015811
Publication Number 2023/204274
Status In Force
Filing Date 2023-04-20
Publication Date 2023-10-26
Owner
  • SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
  • JOYCLE CO., LTD. (Japan)
Inventor
  • Suzuki, Ryosuke
  • Hirao, Naoya
  • Ota, Koji
  • Horie, Seiji
  • Miyazaki, Koji

Abstract

The purpose of the present invention is to provide a microbiota improving agent that is for improving the microbiota in mucosa, skin, and/or nails, that is highly effective in suppressing pathogenic microbes while retaining non-pathogenic indigenous microbes, and that can improve balance in the microbiota in a sustained manner. The present invention pertains to a microbiota improving agent that is for improving the microbiota in mucosa, skin, and/or nails, that contains a base agent (Y) containing a nonvolatile component and at least one substance (X) selected from the group consisting of compounds (X1) having two or more hydroxy groups included in an oxo acid group and salts of said compounds, compounds (X2) having one hydroxy group included in an oxo acid group and salts of said compounds, heterocyclic compounds (X3) not having an oxo acid group and salts of said compounds, and ketones (X4) not having an oxo acid group and salts of said ketones, that satisfies conditions (i) and (ii), and in which the HLB value of the nonvolatile component is 7 or more. (i) The worked penetration of the microbiota improving agent as measured in accordance with JIS K 2220 is 100-400. (ii) The viscosity of the microbiota improving agent at 37°C measured using a cone-plate type rotational viscometer is 1-4,000Pa·s.

IPC Classes  ?

  • A61P 1/02 - Stomatological preparations, e.g. drugs for caries, aphtae, periodontitis
  • A61Q 3/00 - Manicure or pedicure preparations
  • A61Q 11/00 - Preparations for care of the teeth, of the oral cavity or of dentures, e.g. dentifrices or toothpastes; Mouth rinses
  • A61Q 19/00 - Preparations for care of the skin
  • A61K 9/06 - Ointments; Bases therefor
  • A61K 9/08 - Solutions
  • A61K 47/38 - Cellulose; Derivatives thereof
  • A61K 33/00 - Medicinal preparations containing inorganic active ingredients
  • A61K 33/24 - Heavy metals; Compounds thereof
  • A61K 33/42 - Phosphorus; Compounds thereof
  • A23L 29/206 - Foods or foodstuffs containing additives; Preparation or treatment thereof containing gelling or thickening agents of vegetable origin
  • A23L 29/269 - Foods or foodstuffs containing additives; Preparation or treatment thereof containing gelling or thickening agents of microbial origin, e.g. xanthan or dextran
  • A23L 29/288 - Synthetic resins, e.g. polyvinylpyrrolidone
  • A23L 33/10 - Modifying nutritive qualities of foods; Dietetic products; Preparation or treatment thereof using additives
  • A61K 8/19 - Cosmetics or similar toiletry preparations characterised by the composition containing inorganic ingredients
  • A61K 8/24 - Phosphorus; Compounds thereof
  • A61K 8/35 - Ketones, e.g. quinones, benzophenone
  • A61K 8/36 - Carboxylic acids; Salts or anhydrides thereof
  • A61K 8/365 - Hydroxycarboxylic acids; Ketocarboxylic acids
  • A61K 8/73 - Polysaccharides
  • A61K 31/12 - Ketones
  • A61K 31/121 - Ketones acyclic
  • A61K 31/19 - Carboxylic acids, e.g. valproic acid

12.

POLYOL COMPOSITION FOR PRODUCING POLYURETHANE RESIN, POLYURETHANE RESIN-FORMING COMPOSITION, AND POLYURETHANE RESIN

      
Application Number JP2023010302
Publication Number 2023/189653
Status In Force
Filing Date 2023-03-16
Publication Date 2023-10-05
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Wada, Masanobu
  • Sato, Chie

Abstract

The purpose of the present invention is to provide a polyol composition for producing a polyurethane resin, the polyol composition providing a polyurethane resin-forming composition that has low viscosity and an appropriately long pot life, and thus has good casting properties, wherein the polyurethane resin after being cured has excellent moisture-heat resistance and excellent substrate adhesion properties. The present invention relates to a polyol composition for producing a polyurethane resin, the polyol composition containing an ester (A) of a hydroxycarboxylic acid (h) and an amine polyol (a1) represented by general formula (1) and/or a polyamine polyol (a2) represented by general formula (2).

IPC Classes  ?

  • C08G 18/38 - Low-molecular-weight compounds having hetero atoms other than oxygen
  • C08G 18/48 - Polyethers
  • C08G 18/50 - Polyethers having hetero atoms other than oxygen

13.

COSMETIC COMPOSITION, SKIN COSMETIC, AND CLEANSER

      
Application Number JP2023010091
Publication Number 2023/182102
Status In Force
Filing Date 2023-03-15
Publication Date 2023-09-28
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor Yamamoto, Maho

Abstract

The purpose of the present invention is to provide: a skin cosmetic that provides good moist feeling to the skin and good non-stickiness to the skin; and a cosmetic composition that provides good moist feeling to the skin and good non-stickiness to the skin, that has high foamability, and that can be used to obtain a cleanser that is capable of forming fine foam that can be easily washed off. The present invention pertains to a cosmetic composition or the like containing copolymers represented by general formula (1). Regarding the copolymers contained in the cosmetic composition, the average of n + m satisfies 180 ≤ n + m ≤ 350, the average of p + q satisfies 50 ≤ p + q ≤ 90, and a value [asymmetrical coefficient (As)] calculated using the calculation formula (expression 1) below and a chromatogram obtained by measuring a molecular weight distribution of a mixture of the copolymers using gel permeation chromatography under the measurement conditions below is 1.9-4.2. [Measurement conditions for gel permeation chromatography] · Device: HLC-8320GPC (manufactured by Tosoh Corporation) · Analysis column: TSKgel Guard column Super AW, TSKgel Super AW4000, TSKgel Super AW3000, and TSKgel Super AW2500 are linked in series (all of the columns are manufactured by Tosoh Corporation, and TSKgel is a registered trademark of Tosoh Corporation) · Sample solution: 0.125 wt% of N,N-dimethyl formamide solution · The amount of injected solution: 20 μL · Flow rate: 0.6 mL/min · Measurement temperature: 40°C · Detection device: a refractive index detector [In general formula (1), EO represents an ethyleneoxy group, PO represents a propyleneoxy group, m, n, p, and q each independently represent an integer of at least 0, [(EO)n/(PO)p] represents a polyalkyleneoxy chain in which n mol of ethyleneoxy groups and p mol of propyleneoxy groups are linked in an arbitrarily defined order, and [(EO)m/(PO)q] represents a polyalkyleneoxy chain in which m mol of ethyleneoxy groups and q mol of propyleneoxy groups are linked in an arbitrarily defined order.] As = (R - S)/(T - R) (expression 1) [In this calculation expression (expression 1), R represents an elution time (min) at which a peak (P1) having the highest signal intensity indicates a maximum point on a chromatograph, S and T each represent an elution time (min) at a point at which the signal intensity before or after the maximum point of the peak (P1) becomes 1/10 times the height from the baseline to the maximum point and which is closest to the maximum point, and S < R < T is satisfied.]

IPC Classes  ?

14.

VISCOSITY INDEX IMPROVER COMPOSITION AND LUBRICATING OIL COMPOSITION

      
Application Number JP2023006006
Publication Number 2023/167037
Status In Force
Filing Date 2023-02-20
Publication Date 2023-09-07
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Yamazaki, Kenji
  • Matsumoto, Satoshi
  • Takenoshita, Yuichi
  • Ueno, Kazushi
  • Kuwata, Yoshiyuki
  • Yamashita, Hiroki

Abstract

The purpose of the present invention is to provide a viscosity index improver composition which contains a comb-shaped copolymer and has a low local maximum point of viscosity within the range of 40°C to 100°C, while having excellent handling properties. The present invention relates to: a viscosity index improver composition which contains a (co)polymer (A) that comprises a polyolefin monomer (a) represented by general formula (1) as an essential constituent monomer and a GTL oil (B) that has a kinematic viscosity at 100°C of 1.0 to 2.6 mm2/s; a lubricating oil composition which contains this viscosity index improver composition and at least one additive that is selected from the group consisting of a detergent, a dispersant, an antioxidant, an oiliness improver, a pour point depressant, a friction/wear regulator, an extreme-pressure additive, an antifoaming agent, a demulsifier, a metal deactivation agent and a corrosion inhibitor; and the like.

IPC Classes  ?

  • C10M 161/00 - Lubricating compositions characterised by the additive being a mixture of a macromolecular compound and a non-macromolecular compound, each of these compounds being essential
  • C10N 20/00 - Specified physical properties of component of lubricating compositions
  • C10N 20/02 - Viscosity; Viscosity index
  • C10N 20/04 - Molecular weight; Molecular weight distribution
  • C10N 30/02 - Pour-point; Viscosity index
  • C10N 40/25 - Internal-combustion engines
  • C10M 127/02 - Lubricating compositions characterised by the additive being a non-macromolecular hydrocarbon well-defined aliphatic
  • C10M 145/14 - Acrylate; Methacrylate
  • C10M 149/10 - Macromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds containing monomers having an unsaturated radical bound to a nitrogen-containing hetero ring

15.

DIELECTRIC PASTE, DIELECTRIC GREEN SHEET, AND CERAMIC CAPACITOR MANUFACTURING METHOD

      
Application Number JP2023003365
Publication Number 2023/153304
Status In Force
Filing Date 2023-02-02
Publication Date 2023-08-17
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Isobe, Shingo
  • Kaneko, Naofumi

Abstract

The present invention addresses the problem of providing a dielectric paste that provides a dielectric green sheet that is, when being laminated as multiple layers inside a ceramic capacitor, unlikely to cause structural defects such as detachment. Said problem is solved by a dielectric paste which contains: a dielectric body (A) including barium titanate; a binder resin (B); and a plasticizing agent (C). The relative permittivity of the dielectric body (A) is 1000-2000. The plasticizing agent (C) contains a polyalkylene glycol dibenzoate (C1).

IPC Classes  ?

16.

FLUIDITY IMPROVING AGENT FOR SOLID FUEL OR FOR STEEL RAW MATERIAL

      
Application Number JP2022045403
Publication Number 2023/120230
Status In Force
Filing Date 2022-12-09
Publication Date 2023-06-29
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Yoshimoto,ryo
  • Kabu,koji

Abstract

The present invention provides a fluidity improving agent for a solid fuel or for a steel raw material, the fluidity improving agent satisfying (1) and (2) and containing a crosslinked polymer (A) comprising, as essential constituent monomers, a water-soluble vinyl monomer (a1) and/or a vinyl monomer (a2) that becomes (a1) through hydrolysis, and a crosslinking agent (b). According to the present invention, the fluidity improving agent that can improve the fluidity of a solid fuel or a steel raw material without impairing production efficiency and yield can be provided, and a method for modifying the fluidity of a solid fuel or a steel raw material in order to improve the fluidity of the solid fuel or steel raw material without impairing production efficiency and yield can be provided. (1) Gel modulus of elasticity: 1.5-2.5 kN/m2 (2) Water retention amount: greater than 320 g/g and equal to or less than 700 g/g

IPC Classes  ?

  • C08J 3/12 - Powdering or granulating
  • C22B 1/16 - Sintering; Agglomerating
  • C08F 220/06 - Acrylic acid; Methacrylic acid; Metal salts or ammonium salts thereof
  • C10L 10/00 - Use of additives to fuels or fires for particular purposes

17.

SURFACTANT COMPOSITION FOR COSMETIC AND COSMETIC

      
Application Number JP2022036208
Publication Number 2023/100459
Status In Force
Filing Date 2022-09-28
Publication Date 2023-06-08
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor Morita, Mika

Abstract

The purpose of the present invention is to provide a surfactant composition for a cosmetic, the surfactant composition making it possible to obtain a cosmetic that is excellent in bacteriostatic properties and moisture-retaining properties. The present invention provides a surfactant composition for a cosmetic, the surfactant composition containing an ampholytic surfactant (A) and an ester (B). The ampholytic surfactant (A) contains an ampholytic surfactant (a1) represented by general formula (1), the ester (B) contains an ester (b1) represented by general formula (2), and the weight ratio [(b1)/(a1)] of the ester (b1) with respect to the ampholytic surfactant (a1) is from 0.1 wt% to 10 wt%. The present invention also provides a cosmetic using the surfactant composition for a cosmetic.

IPC Classes  ?

  • C07C 227/18 - Preparation of compounds containing amino and carboxyl groups bound to the same carbon skeleton from compounds containing already amino and carboxyl groups or derivatives thereof by reactions involving amino or carboxyl groups, e.g. hydrolysis of esters or amides, by formation of halides, salts or esters
  • C07C 229/12 - Compounds containing amino and carboxyl groups bound to the same carbon skeleton having amino and carboxyl groups bound to acyclic carbon atoms of the same carbon skeleton the carbon skeleton being acyclic and saturated having only one amino and one carboxyl group bound to the carbon skeleton the nitrogen atom of the amino group being further bound to acyclic carbon atoms or to carbon atoms of rings other than six-membered aromatic rings to carbon atoms of acyclic carbon skeletons
  • A61Q 1/00 - Make-up preparations; Body powders; Preparations for removing make-up
  • A61Q 15/00 - Anti-perspirants or body deodorants
  • A61Q 17/00 - Barrier preparations; Preparations brought into direct contact with the skin for affording protection against external influences, e.g. sunlight, X-rays or other harmful rays, corrosive materials, bacteria or insect stings
  • A61Q 17/04 - Topical preparations for affording protection against sunlight or other radiation; Topical sun tanning preparations
  • A61Q 19/00 - Preparations for care of the skin
  • A61Q 5/00 - Preparations for care of the hair
  • A61K 8/44 - Aminocarboxylic acids or derivatives thereof, e.g. aminocarboxylic acids containing sulfur; Salts, esters or N-acylated derivatives thereof

18.

COMPOSITION FOR CARBON DIOXIDE ABSORPTION

      
Application Number JP2022038582
Publication Number 2023/085001
Status In Force
Filing Date 2022-10-17
Publication Date 2023-05-19
Owner
  • SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
  • NIHON UNIVERSITY (Japan)
Inventor
  • Takeda, Takuma
  • Mori, Koichi
  • Manbo, Akihiro
  • Kodama, Daisuke

Abstract

A composition for carbon dioxide absorption comprising an ionic liquid (A) comprising one or more cations and an anion and a protonic compound (B) having a relative permittivity at 25°C of 20 or greater, wherein at least one of the cations is represented by general formula (1), the anion is one, the conjugate acid of which has an acid dissociation constant (pKa) in water at 25 degrees of 4.5 or greater, and the proportion of the number of moles of the protonic compound (B) multiplied by the number of hydroxyl groups of the protonic compound (B) to the number of moles of the ionic liquid (A), (number of moles of the protonic compound (B))/(number of moles of the ionic liquid (A)), is 0.2-1.0. [In general formula (1), R1and R2 each independently represent a hydrogen atom or a C1-C6 chain alkyl group.]

IPC Classes  ?

  • B01D 53/14 - Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases or aerosols by absorption
  • C01B 32/50 - Carbon dioxide

19.

SHOE SOLE BLOCK POLYMER, SHOE SOLE RESIN COMPOSITION, AND SHOE SOLE

      
Application Number JP2022040873
Publication Number 2023/085172
Status In Force
Filing Date 2022-11-01
Publication Date 2023-05-19
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Tokunaga, Hironobu
  • Hattori, Masanori
  • Tanaka, Yuhei

Abstract

An objective of the present invention is to provide a shoe sole having a small compression set. The present invention pertains to a shoe sole block polymer (X) having, as structural units, a polyolefin (a) block, and a polyalkylene glycol (b) block. The polyolefin (a) contains propylene and ethylene as constituent monomers and has a weight ratio of propylene to ethylene (propylene/ethylene) of 90/10-99.5/0.5. The polyalkylene glycol (b) contains a C3-4 alkylene glycol as a constituent monomer.

IPC Classes  ?

  • C08G 81/02 - Macromolecular compounds obtained by interreacting polymers in the absence of monomers, e.g. block polymers at least one of the polymers being obtained by reactions involving only carbon-to-carbon unsaturated bonds
  • A43B 13/04 - Plastics, rubber or vulcanised fibre
  • C08L 53/00 - Compositions of block copolymers containing at least one sequence of a polymer obtained by reactions only involving carbon-to-carbon unsaturated bonds; Compositions of derivatives of such polymers

20.

SHOE SOLE BLOCK POLYMER, SHOE SOLE RESIN COMPOSITION, AND SHOE SOLE

      
Application Number JP2022040685
Publication Number 2023/080109
Status In Force
Filing Date 2022-10-31
Publication Date 2023-05-11
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Tokunaga, Hironobu
  • Hattori, Masanori
  • Tanaka, Yuhei

Abstract

An objective of the present invention is to provide a shoe sole having a small compression set. The present invention pertains to a shoe sole block polymer (X) having, as structural units, a polyamide (am) block, and a polyalkylene glycol (b) block containing a C3-4 alkylene glycol as a constituent monomer, the shoe sole block polymer (X) having a cross-linked structure in which a crosslinking agent (K) and the polyalkylene glycol (b) block are bonded to each other.

IPC Classes  ?

  • C08G 69/40 - Polyamides containing oxygen in the form of ether groups
  • C08L 77/00 - Compositions of polyamides obtained by reactions forming a carboxylic amide link in the main chain; Compositions of derivatives of such polymers
  • C08L 101/00 - Compositions of unspecified macromolecular compounds
  • C08J 9/04 - Working-up of macromolecular substances to porous or cellular articles or materials; After-treatment thereof using blowing gases generated by a previously added blowing agent
  • C08K 3/011 - Crosslinking or vulcanising agents, e.g. accelerators
  • A43B 13/04 - Plastics, rubber or vulcanised fibre
  • A43B 17/14 - Insoles for insertion, e.g. footbeds or inlays, for attachment to the shoe after the upper has been joined made of sponge, rubber, or plastic materials

21.

SAMPLING SHEET, INSPECTION SHEET, AND SAMPLE COLLECTION METHOD

      
Application Number JP2022035338
Publication Number 2023/048214
Status In Force
Filing Date 2022-09-22
Publication Date 2023-03-30
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor Ota, Koji

Abstract

Provided is a small and portable sampling sheet for use as an inspection sheet capable of successively analyzing samples. The sampling sheet according to the present invention comprises a sample suction layer and a microneedle layer having a microneedle formation surface on which sample-collecting microneedles are formed and an adhesive surface facing the microneedle formation surface and in contact with the sample suction layer, wherein the sample suction layer includes a first film having a recessed flow path and a second film laminated on the first film so as to cover the flow path, the flow path includes a sample flow path and a capillary pump connected to the sample flow path, a sample inflow portion and a driving liquid introduction portion having a sealing function are formed in the sample flow path, in a state in which the sample can flow into the sample inflow portion, the driving liquid introduction portion is opened to introduce a driving liquid in an amount that reaches a connection portion between the sample flow path and the capillary pump, and when the driving liquid introduction portion is thereafter closed, the driving liquid moves to the capillary pump due to capillary action, so that the sample flow path becomes in a negative pressure state, the sample is sucked into the sample flow path in the negative pressure state, whereby the capillary pump can be reached, and the sample-collecting microneedles communicate with the sample inflow portion of the sample suction layer.

IPC Classes  ?

  • G01N 1/12 - Dippers; Dredgers
  • G01N 1/10 - Devices for withdrawing samples in the liquid or fluent state
  • G01N 35/08 - Automatic analysis not limited to methods or materials provided for in any single one of groups ; Handling materials therefor using a stream of discrete samples flowing along a tube system, e.g. flow injection analysis
  • G01N 37/00 - INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES - Details not covered by any other group of this subclass

22.

TESTING METHOD AND TESTING REAGENT

      
Application Number JP2022032442
Publication Number 2023/032925
Status In Force
Filing Date 2022-08-29
Publication Date 2023-03-09
Owner
  • KYOTO UNIVERSITY (Japan)
  • SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Mogami, Haruta
  • Kondoh, Eiji
  • Ueda, Yusuke
  • Tomono, Yuki
  • Iwasawa, Daijiro
  • Kurokawa, Masato

Abstract

Provided is a testing method that uses a biomarker related to prediction of possibility of success of labor induction, prediction of preterm labor and prediction of threatened preterm labor, and that can be performed highly reliably, simply and easily, and non-invasively. The testing method according to the present invention uses the expression level of 15-PGDH as an indicator of the possibility of success of labor induction, and includes a step for detecting the expression level of 15-PGDH in a specimen, where the specimen is vaginal discharge.

IPC Classes  ?

  • G01N 33/573 - Immunoassay; Biospecific binding assay; Materials therefor for enzymes or isoenzymes
  • C07K 16/40 - Immunoglobulins, e.g. monoclonal or polyclonal antibodies against enzymes
  • C12Q 1/68 - Measuring or testing processes involving enzymes, nucleic acids or microorganisms; Compositions therefor; Processes of preparing such compositions involving nucleic acids
  • C12Q 1/6876 - Nucleic acid products used in the analysis of nucleic acids, e.g. primers or probes

23.

ANTISTATIC AGENT

      
Application Number JP2022000883
Publication Number 2023/281771
Status In Force
Filing Date 2022-01-13
Publication Date 2023-01-12
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Sugimoto, Yuko
  • Fujita, Shinichi

Abstract

An antistatic agent (Z) which comprises a block polymer (A) comprising a block of a hydrophobic polymer (a) and a block of a hydrophilic polymer (b) as constituent units and sulfonic acid salts (S), wherein the sulfonic acid salts (S) include at least two alkylbenzenesulfonic acid salts which are salts each constituted from an alkylbenzenesulfonic acid anion (the alkyl having 6-18 carbon atoms) and which differ in the number of carbon atoms of the alkyl group of the anion, the sulfonic acid salts (S) satisfying the relationship 0.40≤W(n)/[W(n-1)+W(n)+W(n+1)]≤0.90 (wherein n is the number of carbon atoms of the alkyl group of the anion as a component of an alkylbenzenesulfonic acid salt having the highest weight proportion of the sulfonic acid salts (S); W(n) is the weight of said alkylbenzenesulfonic acid salt; and W(n-1) and W(n+1) are the weights of alkylbenzenesulfonic acid salts respectively including an anion having an alkyl group with n-1 carbon atoms and an anion having an alkyl group with n+1 carbon atoms).

IPC Classes  ?

  • C08G 69/48 - Polymers modified by chemical after-treatment
  • D01F 1/10 - Other agents for modifying properties
  • C09K 3/16 - Anti-static materials

24.

ELECTROLYTE FOR ELECTROLYTIC CAPACITOR AND ELECTROLYTIC CAPACITOR AND HYBRID ELECTROLYTIC CAPACITOR USING SAID ELECTROLYTE

      
Application Number JP2022023046
Publication Number 2023/276589
Status In Force
Filing Date 2022-06-08
Publication Date 2023-01-05
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor Ito, Hyugo

Abstract

Provided is an electrolyte that has high initial conductivity, little change over time, and causes less corrosion of capacitor members. Also provided are an aluminum electrolytic capacitor and a hybrid electrolytic capacitor that use the electrolyte and have low initial ESR and little change over time. This electrolyte for an electrolytic capacitor includes an acid component (A), a base component (B), and an organic solvent (C). The acid component (A) includes an acid component (A1) and/or an acid component (A2) that are represented by a specified formula. The total acid component (A1) and acid component (A2) content is at least 50% by mass of the mass of the acid component (A). The base component (B) includes at least one type of component selected from the group consisting of ammonium, a primary amine (B1), a secondary amine (B2), and a tertiary amine (B3).

IPC Classes  ?

  • H01G 9/035 - Liquid electrolytes, e.g. impregnating materials
  • H01G 9/145 - Liquid electrolytic capacitors
  • H01G 9/15 - Solid electrolytic capacitors

25.

VISCOSITY INDEX IMPROVER, REFRIGERATOR OIL, AND WORKING FLUID COMPOSITION FOR REFRIGERATORS

      
Application Number JP2022023716
Publication Number 2022/270342
Status In Force
Filing Date 2022-06-14
Publication Date 2022-12-29
Owner
  • SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
  • ENEOS CORPORATION (Japan)
Inventor
  • Ogata, Kazuki
  • Sugiyama, Yoshimitsu
  • Torii, Naohiro
  • Goto, Satoshi
  • Mizutani, Yuya
  • Ogata, Hidetoshi
  • Seki, Yuma
  • Nakajima, Tatsuki

Abstract

The present invention relates to: a viscosity index improver which contains a copolymer (A) that contains, as essential constituent monomers, a monomer (a) represented by general formula (1) and having a fluorine atom and a monomer (b) represented by general formula (2), wherein the solubility parameter of the copolymer (A) is 8.1 to 10.0 (cal/cm3)1/2, and the ratio (b/a) of the mass of the monomer (b) to the mass of the monomer (a) in the monomers constituting the copolymer (A) is 0.01 to 42; and the like. [In general formula (1), R1represents a hydrogen atom or a methyl group; R2represents an alkylene group having 2 to 4 carbon atoms; p represents an integer of 0 or 1; q represents an integer of 0 to 20, and in cases where q is 2 or more, the R2moieties may be the same as or different from each other; and Y represent a monovalent group that is obtained by substituting some or all of hydrogen atoms in a hydrocarbon group having 1 to 40 carbon atoms by fluorine atoms.] [In general formula (2), R3represents a hydrogen atom or a methyl group; -X1- represents a group represented by -O- or -NH-; R4represents an alkylene group having 2 to 4 carbon atoms; r represents an integer of 0 or 1; s represents an integer of 0 to 20, and in cases where s is 2 or more, the R4moieties may be the same as or different from each other; and R5 represents a hydrocarbon group having 1 to 40 carbon atoms.]

IPC Classes  ?

  • C08F 220/04 - Acids; Metals salts or ammonium salts thereof
  • C09K 3/00 - Materials not provided for elsewhere
  • C10M 105/38 - Esters of polyhydroxy compounds
  • C10M 107/24 - Macromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds containing monomers having an unsaturated radical bound to an alcohol, aldehydo, ketonic, ether, ketal or acetal radical
  • C10M 107/34 - Polyoxyalkylenes
  • C10M 147/04 - Monomer containing carbon, hydrogen, halogen and oxygen
  • C09K 5/04 - Materials undergoing a change of physical state when used the change of state being from liquid to vapour or vice-versa

26.

ANTISTATIC AGENT FOR THERMOPLASTIC RESINS

      
Application Number JP2021037096
Publication Number 2022/264441
Status In Force
Filing Date 2021-10-07
Publication Date 2022-12-22
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Sugimoto, Yuko
  • Fujita, Shinichi

Abstract

Provided are: an antistatic agent (Z) for thermoplastic resins, which contains a block polymer (A) having a block of hydrophobic polymers (a) and a block of hydrophilic polymers (b) as constituent units, and a branched alkyl (C6-C18 alkyl) benzenesulfonate (S); an antistatic resin composition (Y) which contains the antistatic agent (Z) and a thermoplastic resin (E); and a molded article obtained by molding the antistatic resin composition (Y).

IPC Classes  ?

  • C08K 5/42 - Sulfonic acids; Derivatives thereof
  • C08L 101/00 - Compositions of unspecified macromolecular compounds
  • C09K 3/16 - Anti-static materials

27.

ADHESIVE PRIMARY AGENT, ADHESIVE COMPOSITION AND ADHESIVE FILM

      
Application Number JP2022021510
Publication Number 2022/250106
Status In Force
Filing Date 2022-05-26
Publication Date 2022-12-01
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Hirata, Ryosuke
  • Imai, Masato

Abstract

The purpose of the present invention is to provide an adhesive primary agent for manufacturing an adhesive film with excellent adhesion in a wide range of temperatures. The adhesive primary agent contains a copolymer (A) which as constituent monomers includes alkyl acrylate (a1) having an alkyl group with 4-8 carbons, (meth)acrylate (a2) having a hydroxy group, and a dialkyl (meth)acrylamide (a3) having two alkyl groups with 1-2 carbons each.

IPC Classes  ?

  • C09J 133/06 - Homopolymers or copolymers of esters of esters containing only carbon, hydrogen and oxygen, the oxygen atom being present only as part of the carboxyl radical
  • C09J 7/38 - Pressure-sensitive adhesives [PSA]
  • C09J 133/26 - Homopolymers or copolymers of acrylamide or methacrylamide

28.

MAIN AGENT FOR ADHESIVE, ADHESIVE COMPOSITION, AND ADHESIVE FILM

      
Application Number JP2022021509
Publication Number 2022/250105
Status In Force
Filing Date 2022-05-26
Publication Date 2022-12-01
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Tomita, Yusuke
  • Imai, Masato

Abstract

The purpose of the present disclosure is to provide an adhesive composition having excellent adhesiveness. An adhesive composition according to the present disclosure contains a copolymer (A) that includes, as constituent monomers, at least one monomer selected from the group consisting of: 2-ethylhexyl acrylate (a1); a branched alkyl (meth)acrylate (a2) other than the 2-ethylhexyl acrylate (a1) that has a 4-10C branched alkyl group; a straight-chain alkyl (meth)acrylate (a3) having a 1-4C straight-chain alkyl group; and a nitrogen atom-containing monomer (a4). In the copolymer (A), the carboxy group concentration is 0.08 mol/kg or less, the hydroxyl group concentration is 0.05 mol/kg or less, and the tertiary carbon concentration derived from the 2-ethylhexyl acrylate (a1) and the branched alkyl (meth)acrylate (a2) is 1.5-5.0 mol/kg, inclusive.

IPC Classes  ?

29.

CROSS-LINKED POLYMER, METHOD FOR SEPARATING SUBSTANCE, KIT FOR SEPARATING SUBSTANCE, KIT FOR TESTING FOR DISEASE, AND DEVICE FOR SEPARATING SUBSTANCE

      
Application Number JP2022016441
Publication Number 2022/211006
Status In Force
Filing Date 2022-03-31
Publication Date 2022-10-06
Owner
  • SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
  • TOKUSHIMA UNIVERSITY (Japan)
Inventor
  • Ota, Koji
  • Abe, Hideharu
  • Ute, Koichi

Abstract

Provided is a cross-linked polymer useful for separating a substance having a lipid bi-layer. The cross-linked polymer, which comprises a monomer unit having an acidic group and/or a neutralizing base thereof, and which contains a compound having at least one group selected from the group consisting of a cationic group and a hydroxyl group, can be suitably used to separate, from a biological sample, a substance that has a lipid bi-layer.

IPC Classes  ?

  • C12M 1/00 - Apparatus for enzymology or microbiology
  • G01N 33/48 - Biological material, e.g. blood, urine; Haemocytometers
  • G01N 33/50 - Chemical analysis of biological material, e.g. blood, urine; Testing involving biospecific ligand binding methods; Immunological testing

30.

RESIN MODIFIER, RESIN COMPOSITION, MOLDED ARTICLE, AND MOLDED PRODUCT

      
Application Number JP2022012702
Publication Number 2022/202684
Status In Force
Filing Date 2022-03-18
Publication Date 2022-09-29
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Takemura, Daiki
  • Tokunaga, Hironobu
  • Nakabuchi, Takashi

Abstract

A resin modifier (Y) includes a block polymer (X) having, as structural units, a hydrophobic polymer (a) block and hydrophilic polymer (b) block, and a polyolefin (W) having a functional group that is reactive to a carboxylic group, wherein the block polymer (X) has a molecular structure which is any one of (1)-(3) below. (1) A straight-chain (a)-(b) diblock structure; (2) a straight-chain (b)-(a)-(b) triblock structure; (3) a branched structure in which two to three (b) blocks are attached to one end of an (a) block.

IPC Classes  ?

  • C08G 81/02 - Macromolecular compounds obtained by interreacting polymers in the absence of monomers, e.g. block polymers at least one of the polymers being obtained by reactions involving only carbon-to-carbon unsaturated bonds
  • C08L 23/26 - Compositions of homopolymers or copolymers of unsaturated aliphatic hydrocarbons having only one carbon-to-carbon double bond; Compositions of derivatives of such polymers modified by chemical after-treatment
  • C08L 87/00 - Compositions of unspecified macromolecular compounds, obtained otherwise than by polymerisation reactions only involving unsaturated carbon-to-carbon bonds
  • C08L 101/00 - Compositions of unspecified macromolecular compounds

31.

POLYURETHANE UREA RESIN SOLUTION, COATING MATERIAL USING SAME, PRINTING INK, COATING AGENT, AND ADHESIVE AGENT

      
Application Number JP2021001807
Publication Number 2022/157851
Status In Force
Filing Date 2021-01-20
Publication Date 2022-07-28
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Fujioka, Masataka
  • Nakata, Yosuke
  • Higuchi, Shintaro
  • Tode, Yoshiki

Abstract

The present invention relates to a polyurethane urea resin solution containing a solvent (S) and a polyurethane urea resin (U) having, as essential constituent monomers, a hydroxyl group-modified polyolefin (A), a polyisocyanate (B), and a chain extender (C) having a number average molecular weight or chemical formula amount of less than 500, wherein: the weight ratio (ethylene : α-olefin) of ethylene, which is a constituent monomer of (A), and an α-olefin having 3 to 8 carbon atoms, is 5:95 to 95:5; the isotacticity of the α-olefin unit chain part of (A) is 10 to 50%; the number average molecular weight of (A) is 1,000 to 6,000; the concentration of the urea groups in the polyurethane urea resin (U) is 0.3 to 1.3 mmol/g on the basis of the weight of the polyurethane urea resin (U); and the weight ratio of the specific constituent unit of the polyurethane urea resin (U) is 4 wt% or less on the basis of the weight of the polyurethane urea resin (U).

IPC Classes  ?

  • C08G 18/32 - Polyhydroxy compounds; Polyamines; Hydroxy amines
  • C08G 18/62 - Polymers of compounds having carbon-to-carbon double bonds

32.

COMPOUND, COMPOSITION, BIOTISSUE EMBRITTLEMENT AGENT, BIOTISSUE SURFACE DETACHMENT METHOD, AND BIOTISSUE DETACHMENT KIT

      
Application Number JP2021047282
Publication Number 2022/138626
Status In Force
Filing Date 2021-12-21
Publication Date 2022-06-30
Owner
  • SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
  • JUNTENDO EDUCATIONAL FOUNDATION (Japan)
Inventor
  • Murakami, Yuta
  • Nakai, Kenichiro
  • Ota, Nozomi
  • Motofuji, Shihei
  • Nakamura, Tetsuya
  • Matsumoto, Yuka

Abstract

nn-R [In general formula (3), -Y- represents -O-, -NH-, or -S-, A represents an alkylene group having 2-4 carbon atoms, R represents a hydrogen atom or a monovalent hydrocarbon group which has 1-15 carbon atoms and in which a hydrogen atom is optionally substituted with an alkoxy group having 1-10 carbon atoms, n represents an integer of 4-1000, at least one of the n-number of A's is an ethylene group, and, when there is more than one of the monovalent group represented by general formula (3) in general formulae (1) and (2), each -Y-, each A, each R, and each n may be identical to or different from each other.]

IPC Classes  ?

  • C08G 65/333 - Polymers modified by chemical after-treatment with organic compounds containing nitrogen
  • A61K 31/197 - Carboxylic acids, e.g. valproic acid having an amino group the amino and the carboxyl groups being attached to the same acyclic carbon chain, e.g. gamma-aminobutyric acid (GABA), beta-alanine, epsilon-aminocaproic acid, pantothenic acid
  • A61K 31/77 - Polymers containing oxygen of oxiranes
  • A61P 1/04 - Drugs for disorders of the alimentary tract or the digestive system for ulcers, gastritis or reflux esophagitis, e.g. antacids, inhibitors of acid secretion, mucosal protectants
  • A61P 41/00 - Drugs used in surgical methods, e.g. surgery adjuvants for preventing adhesion or for vitreum substitution
  • C08L 71/02 - Polyalkylene oxides

33.

THICKENING AGENT FOR WELL ACID TREATMENT LIQUIDS AND WELL ACID TREATMENT LIQUID USING SAME

      
Application Number JP2021044838
Publication Number 2022/124287
Status In Force
Filing Date 2021-12-07
Publication Date 2022-06-16
Owner
  • SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
  • KURARAY CO., LTD. (Japan)
Inventor
  • Miyamoto, Sou
  • Hashimoto, Naoya
  • Kaneshima, Takuma

Abstract

The purpose of the present invention is to provide a thickening agent for well acid treatment liquids, said thickening agent having excellent hydrolysis resistance and high thickening properties, by applying a thickening agent (X) for well acid treatment liquids, said thickening agent (X) containing a surfactant (a) represented by general formula (1). Chemical formula 1 (In the formula, R1represents an alkyl group having from 12 to 22 carbon atoms or an alkenyl group having from 12 to 22 carbon atoms; each of R2and R3independently represents an alkyl group having from 1 to 3 carbon atoms or a hydroxyalkyl group having from 1 to 3 carbon atoms; X represents a linear hydroxyalkylene group having 3 carbon atoms or a branched hydroxyalkylene group having 3 carbon atoms; and Y-33 -.)

IPC Classes  ?

  • C09K 8/035 - Organic additives
  • C09K 8/584 - Compositions for enhanced recovery methods for obtaining hydrocarbons, i.e. for improving the mobility of the oil, e.g. displacing fluids characterised by the use of specific surfactants
  • C09K 8/68 - Compositions based on water or polar solvents containing organic compounds

34.

TWO-COMPONENT POLYURETHANE ADHESIVE, AND ADHEREND

      
Application Number JP2021042657
Publication Number 2022/118684
Status In Force
Filing Date 2021-11-19
Publication Date 2022-06-09
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Shimada, Tetsuya
  • Morimoto, Kyosuke

Abstract

A purpose of the present invention is to provide a two-component polyurethane adhesive having exceptional safety and excellent resin strength, heat resistance, durability, and coating properties. The present invention relates to, inter alia, a two-component polyurethane adhesive formed from: a main agent (X) containing a polyol component (A) having, as an essential component, a polyether polyol (a) in which ethylene oxide and/or propylene oxide is added to a 6- to 14-functional polyol; and a curing agent (Y) containing an isocyanate component (B), wherein the NCO content of entire the isocyanate component (B) is 18-30 wt%, and the glass transition temperature of the two-component polyurethane adhesive after curing is 100-150°C.

IPC Classes  ?

35.

ULTRAVIOLET CURABLE RESIN COMPOSITION, LIGHT EMITTING DEVICE AND METHOD FOR MANUFACTURING LIGHT EMITTING DEVICE

      
Application Number JP2021041575
Publication Number 2022/102716
Status In Force
Filing Date 2021-11-11
Publication Date 2022-05-19
Owner
  • PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD. (Japan)
  • SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Uraoka, Yusuke
  • Ikegami, Hiroki
  • Senshu, Takahiro
  • Yamashita, Mayuko
  • Wakatsuki, Atsushi
  • Watanabe, Wataru

Abstract

2n22; and a photopolymerization initiator (D) containing an acylphosphine oxide compound, wherein the ultraviolet curable resin composition satisfies at least one among a viscosity at 25 °C of 1-40 mPa・s, and a viscosity at 40 °C of 1-40 mPa・s.

IPC Classes  ?

  • C08F 220/20 - Esters of polyhydric alcohols or phenols
  • C08F 220/54 - Amides
  • C09K 3/10 - Materials not provided for elsewhere for sealing or packing joints or covers
  • C08F 2/50 - Polymerisation initiated by wave energy or particle radiation by ultraviolet or visible light with sensitising agents
  • H05B 33/04 - Sealing arrangements
  • H05B 33/10 - Apparatus or processes specially adapted to the manufacture of electroluminescent light sources
  • H01L 51/50 - Solid state devices using organic materials as the active part, or using a combination of organic materials with other materials as the active part; Processes or apparatus specially adapted for the manufacture or treatment of such devices, or of parts thereof specially adapted for light emission, e.g. organic light emitting diodes (OLED) or polymer light emitting devices (PLED)

36.

FIBER SIZING AGENT COMPOSITION, FIBER BUNDLE, FIBER PRODUCT, AND COMPOSITE MATERIAL

      
Application Number JP2021039804
Publication Number 2022/092194
Status In Force
Filing Date 2021-10-28
Publication Date 2022-05-05
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor Inoue, Hirofumi

Abstract

This fiber sizing agent composition comprises: a first resin (A) which has at least one first functional group selected from the group consisting of a vinyl group, a vinylene group, and a sulfanyl group, and at least one second functional group selected from the group consisting of an epoxy group, an amino group, and an oxazolin-2-yl group; and a second resin (B) which has a hydrophobic moiety having an SP value of 10.6-11.6 (cal/cm3)1/2, and has an acid value of 0-20 mg KOH/g.

IPC Classes  ?

  • D06M 15/273 - Macromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds of unsaturated carboxylic acids; Salts or esters thereof of unsaturated carboxylic esters having epoxy groups
  • D06M 15/507 - Polyesters
  • D06M 15/572 - Reaction products of isocyanates with polyesters or polyesteramides

37.

METHOD FOR TREATING WASTEWATER CONTAINING SOLUBLE FRACTION OF HIGHLY WATER ABSORBENT POLYMER

      
Application Number JP2021038662
Publication Number 2022/091885
Status In Force
Filing Date 2021-10-19
Publication Date 2022-05-05
Owner
  • UNICHARM CORPORATION (Japan)
  • SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Konishi, Takayoshi
  • Bandoh, Takeshi
  • Suzuki, Kazumitsu
  • Morita, Eiji
  • Hasegawa, Shimpei

Abstract

The purpose of the present disclosure is to provide a method for treating wastewater which contains a soluble fraction of a highly water absorbent polymer, said method being capable of easily recovering the soluble fraction of the highly water absorbent polymer. The method of the present disclosure has the following configuration. A method for treating wastewater which contains the soluble fraction of a highly water absorbent polymer, said method being characterized by involving: a wastewater preparation step for preparing wastewater containing the soluble fraction of the highly water absorbent polymer which is dissolved in the wastewater and obtained by oxidative decomposition of the highly water absorbent polymer, and a dispersed fraction which is dispersed in said wastewater; an aggregate formation step for forming an aggregate which contains the soluble fraction and the dispersed fraction by adding a flocculant to the wastewater; and an aggregate recovery step for recovering said aggregate from the wastewater.

IPC Classes  ?

  • C02F 1/52 - Treatment of water, waste water, or sewage by flocculation or precipitation of suspended impurities
  • B01D 21/01 - Separation of suspended solid particles from liquids by sedimentation using flocculating agents
  • C02F 1/56 - Macromolecular compounds
  • C02F 3/00 - Biological treatment of water, waste water, or sewage

38.

METHOD FOR DEHYDRATION TREATMENT OF WATER-ABSORBENT RESIN PARTICLES

      
Application Number JP2021039108
Publication Number 2022/091975
Status In Force
Filing Date 2021-10-22
Publication Date 2022-05-05
Owner
  • SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
  • UNICHARM CORPORATION (Japan)
Inventor
  • Morita Eiji
  • Hasegawa Shimpei
  • Suzuki Kazumitsu
  • Kurita Noritomo
  • Konishi Takayoshi
  • Bando Takeshi

Abstract

Provided is a method for dehydration treatment that is capable of adequately dehydrating moisture absorbed by water-absorbent resin particles, that facilitates drying of water-absorbent resin particles in a subsequent step, and that facilitates reuse of the water-absorbent resin particles. The present invention is a method for dehydration treatment of moisture absorbed by water-absorbent resin particles containing a crosslinked polymer (A) having as essential structural units a (meth)acryl(ate) and a crosslinking agent (b), wherein the method for dehydration treatment uses any of a method (1) including a step for mixing the water-absorbent resin particles which are absorbing moisture with a water-soluble inorganic acid (c1) and a subsequent step for further mixing with a water-soluble monovalent metal compound (c2), a method (2) including a step for mixing the water-absorbent resin particles which are absorbing moisture with (c2) and a subsequent step for further mixing with (c1), and a method (3) including a step for mixing the water-absorbent resin particles which are absorbing moisture with (c1) and (c2).

IPC Classes  ?

  • C08J 3/12 - Powdering or granulating
  • C08J 11/06 - Recovery or working-up of waste materials of polymers without chemical reactions
  • B01J 20/34 - Regenerating or reactivating

39.

BLOCK POLYMER, THERMOPLASTIC RESIN COMPOSITION AND MOLDED ARTICLE

      
Application Number JP2021037948
Publication Number 2022/085542
Status In Force
Filing Date 2021-10-13
Publication Date 2022-04-28
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Higuchi, Shintaro
  • Teranishi, Satoru

Abstract

A block polymer (X) which comprises, as constituent units, a polyolefin structure that is derived from the polyolefin (A) described below, and another polyolefin structure that is derived from the polyolefin (B) described below. Polyolefin (A): A polyolefin which contains, as a constituent monomer, an α-olefin that has from 3 to 8 carbon atoms, wherein: the isotacticity of the α-olefin portion is from 70% to 100%; the number average molecular weight is from 1,000 to 200,000; and the number of carbon-carbon double bonds per 1,000 carbon atoms is from 0.01 to 8.0. Polyolefin (B): A polyolefin which contains, as a constituent monomer, an α-olefin that has from 3 to 8 carbon atoms, wherein: the isotacticity of the α-olefin portion is from 1% to 65%; and the number average molecular weight is from 1,000 to 200,000.

IPC Classes  ?

  • C08G 81/02 - Macromolecular compounds obtained by interreacting polymers in the absence of monomers, e.g. block polymers at least one of the polymers being obtained by reactions involving only carbon-to-carbon unsaturated bonds
  • C08F 10/00 - Homopolymers or copolymers of unsaturated aliphatic hydrocarbons having only one carbon-to-carbon double bond
  • C08F 293/00 - Macromolecular compounds obtained by polymerisation on to a macromolecule having groups capable of inducing the formation of new polymer chains bound exclusively at one or both ends of the starting macromolecule
  • C08G 81/00 - Macromolecular compounds obtained by interreacting polymers in the absence of monomers, e.g. block polymers
  • C08K 3/013 - Fillers, pigments or reinforcing additives
  • C08L 53/00 - Compositions of block copolymers containing at least one sequence of a polymer obtained by reactions only involving carbon-to-carbon unsaturated bonds; Compositions of derivatives of such polymers
  • C08L 87/00 - Compositions of unspecified macromolecular compounds, obtained otherwise than by polymerisation reactions only involving unsaturated carbon-to-carbon bonds
  • C08L 101/00 - Compositions of unspecified macromolecular compounds

40.

METHOD FOR PRODUCING WATER-ABSORBING RESIN PARTICLES

      
Application Number JP2021037650
Publication Number 2022/080342
Status In Force
Filing Date 2021-10-12
Publication Date 2022-04-21
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Morita Eiji
  • Hasegawa Shimpei
  • Suzuki Kazumitsu

Abstract

Provided is a method for efficiently producing recycled water-absorbing resin particles having little reduced absorbing properties and various excellent properties, using, as a raw material, waste water-absorbing resin particles derived from used sanitary supplies, etc. This method for producing water-absorbing resin particles comprises a polymerization step (I) in which a monomer composition is polymerized to obtain an aqueous gel containing a crosslinked polymer (A), a gel chopping step (II) in which the aqueous gel is chopped, a drying step (III) in which the aqueous-gel particles obtained in the step (II) are dried, and a pulverization/classification step (IV) in which the dried particles obtained in the step (III) are pulverized and classified, wherein a product (B) of decomposition of water-absorbing resin particles obtained from sanitary supplies is added in at least one step among the steps (I), (II), (III), and (IV), the decomposition product (B) having a content of water solubles of 1.0-30.0 wt%.

IPC Classes  ?

  • C08J 3/12 - Powdering or granulating
  • B01J 20/26 - Synthetic macromolecular compounds
  • C08F 220/06 - Acrylic acid; Methacrylic acid; Metal salts or ammonium salts thereof

41.

RESIN FOR PIGMENT-DISPERSION MASTERBATCH FOR PRESSURE-SENSITIVE ADHESIVE, PIGMENT-DISPERSION MASTERBATCH FOR PRESSURE-SENSITIVE ADHESIVE, COLORED PRESSURE-SENSITIVE ADHESIVE COMPOSITION, AND PRESSURE-SENSITIVE ADHESIVE SHEET

      
Application Number JP2021035468
Publication Number 2022/071252
Status In Force
Filing Date 2021-09-27
Publication Date 2022-04-07
Owner
  • NITTO DENKO CORPORATION (Japan)
  • SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Ozaki Mayu
  • Nakano Takeshi
  • Tobinaga Shun
  • Shinohara Shuichi
  • Ota Koji

Abstract

The present invention relates to a resin for a pigment-dispersion masterbatch for pressure-sensitive adhesives, the resin including a resin (A), the resin (A) having a glass transition temperature of -80 to 40°C and an acid value of 1-50 (KOHmg/g).

IPC Classes  ?

  • C08J 3/22 - Compounding polymers with additives, e.g. colouring using masterbatch techniques
  • C08F 220/18 - Esters of monohydric alcohols or phenols of phenols or of alcohols containing two or more carbon atoms with acrylic or methacrylic acids
  • C08L 33/00 - Compositions of homopolymers or copolymers of compounds having one or more unsaturated aliphatic radicals, each having only one carbon-to-carbon double bond, and only one being terminated by only one carboxyl radical, or of salts, anhydrides, esters,; Compositions of derivatives of such polymers
  • C09J 133/00 - Adhesives based on homopolymers or copolymers of compounds having one or more unsaturated aliphatic radicals, each having only one carbon-to-carbon double bond, and at least one being terminated by only one carboxyl radical, or of salts, anhydrides, ; Adhesives based on derivatives of such polymers
  • C09J 7/38 - Pressure-sensitive adhesives [PSA]
  • C08J 7/04 - Coating

42.

VISCOSITY INDEX IMPROVING AGENT AND LUBRICATING OIL COMPOSITION

      
Application Number JP2021033640
Publication Number 2022/054956
Status In Force
Filing Date 2021-09-14
Publication Date 2022-03-17
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Naito, Nobuhiro
  • Matsumoto, Satoshi
  • Hashimoto, Masahiro
  • Yoshida, Kenyuu
  • Yamashita, Hiroki
  • Sato, Ryota

Abstract

The purpose of the present invention is to provide: a viscosity index improving agent which, when added to a lubricating oil composition, makes it possible to provide a lubricating oil composition having a satisfactory gelatinization index, an excellent HTHS viscosity at 100℃, and excellent kinematic viscosity at 40℃; and a lubricating oil composition containing the viscosity index improving agent. The present invention relates to: a viscosity index improving agent comprising a copolymer (A) and an ester oil (Z), in which the copolymer (A) contains, as constituent monomers thereof, a polyolefin monomer (a) represented by general formula (1) and a monomer (b) represented by general formula (2) wherein R4represents an alkyl group having 4 carbon atoms, and further contains, as a constituent monomer thereof, a monomer (c) represented by general formula (3) and/or a monomer (d) represented by general formula (2) wherein R4represents an alkyl group having 2 to 3 carbon atoms; and others. [In general formula (1), R1represents a hydrogen atom or a methyl group; -X1mm- or -NH-, in which A represents an alkylene group having 2 to 4 carbon atoms, and m represents an integer of 1 to 10, in which, when m is 2 or more, a plurality of A's may be the same as or different from each other; R2represents a residue having a structure such that one hydrogen atom is removed from a hydrocarbon polymer containing a 1,2-butylene group as a constituent unit; and p represents a numerical value of 0 or 1.] [In general formula (2), R3represents a hydrogen atom or a methyl group; -X2- represents a group represented by -O- or -NH-; and R4represents an alkyl group having 2 to 4 carbon atoms.] [In general formula (3), R5represents a hydrogen atom or a methyl group; -X3- represents a group represented by -O- or -NH-; R6represents an alkylene group having 2 to 4 carbon atoms; R7represents an alkyl group having 1 to 8 carbon atoms; and r represents an integer of 1 to 20, in which, when r is 2 or more, a plurality of R6's may be the same as or different from each other.]

IPC Classes  ?

  • C08F 290/04 - Polymers provided for in subclasses or
  • C10N 20/02 - Viscosity; Viscosity index
  • C10N 40/04 - Oil-bath; Gear-boxes; Automatic transmissions; Traction drives
  • C10N 40/06 - Instruments or other precision apparatus, e.g. damping fluids
  • C10N 40/08 - Hydraulic fluids, e.g. brake-fluids
  • C10N 40/25 - Internal-combustion engines
  • C08K 5/103 - Esters; Ether-esters of monocarboxylic acids with polyalcohols
  • C08L 55/00 - Compositions of homopolymers or copolymers, obtained by polymerisation reactions only involving carbon-to-carbon unsaturated bonds, not provided for in groups
  • C08L 91/00 - Compositions of oils, fats or waxes; Compositions of derivatives thereof
  • C09K 3/00 - Materials not provided for elsewhere
  • C10M 101/02 - Petroleum fractions
  • C10M 105/32 - Esters
  • C10M 145/14 - Acrylate; Methacrylate

43.

VISCOSITY INDEX IMPROVER AND LUBRICATING OIL COMPOSITION

      
Application Number JP2021033641
Publication Number 2022/054957
Status In Force
Filing Date 2021-09-14
Publication Date 2022-03-17
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Naito, Nobuhiro
  • Matsumoto, Satoshi
  • Hashimoto, Masahiro
  • Yoshida, Kenyuu
  • Yamashita, Hiroki
  • Sato, Ryota

Abstract

A purpose of the present invention is to provide a viscosity index improver having an excellent friction reducing effect on a lubricating oil composition to which the viscosity index improver has been added, and a lubricating oil composition containing the same. The present invention relates to a viscosity index improver, etc. containing a (co)polymer (A) including a polyolefin monomer (a) represented by general formula (1) as an essential structural monomer, an ester oil (B1) having a 100°C kinematic viscosity of 1.00-2.50 mm2/s, and an ester oil (B2) having a 100°C kinematic viscosity of 2.51-5.00 mm2/s. [In general formula (1), R1is a hydrogen atom or a methyl group; -X1mm-, or -NH-, in which A is a C2-4 alkylene group, m is an integer of 1-10, and A may be the same or different when m is 2 or higher; R2 is a residue obtained by removing one hydrogen atom from a hydrocarbon polymer including a 1,2-butylene group as a structural unit; and p is a number of 0 or 1.]

IPC Classes  ?

  • C08F 290/04 - Polymers provided for in subclasses or
  • C10N 20/02 - Viscosity; Viscosity index
  • C10N 40/04 - Oil-bath; Gear-boxes; Automatic transmissions; Traction drives
  • C10N 40/06 - Instruments or other precision apparatus, e.g. damping fluids
  • C10N 40/08 - Hydraulic fluids, e.g. brake-fluids
  • C10N 40/25 - Internal-combustion engines
  • C08K 5/103 - Esters; Ether-esters of monocarboxylic acids with polyalcohols
  • C08L 55/00 - Compositions of homopolymers or copolymers, obtained by polymerisation reactions only involving carbon-to-carbon unsaturated bonds, not provided for in groups
  • C08L 91/00 - Compositions of oils, fats or waxes; Compositions of derivatives thereof
  • C09K 3/00 - Materials not provided for elsewhere
  • C10M 101/02 - Petroleum fractions
  • C10M 105/32 - Esters
  • C10M 145/14 - Acrylate; Methacrylate

44.

ELECTROLYTIC CAPACITOR

      
Application Number JP2021027360
Publication Number 2022/044636
Status In Force
Filing Date 2021-07-21
Publication Date 2022-03-03
Owner
  • PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD. (Japan)
  • SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Saito Kazuyo
  • Tsubaki Yuichiro
  • Aoyama Tatsuji
  • Uchihashi Kengo

Abstract

This electrolytic capacitor comprises a capacitor element and a liquid component. The capacitor element comprises a positive electrode body that has a dielectric layer on a surface thereof, and a conductive polymer component that covers a part of the dielectric layer. The liquid component contains a first solvent, a base component, and an acid component. The first solvent is composed of at least one substance that is selected from the group consisting of polyols and derivatives thereof. The base component contains a first base which has an acid dissociation constant of a conjugate acid of from 5 to 10, while having no boiling point or a boiling point of 100°C or higher.

IPC Classes  ?

  • H01G 9/028 - Organic semiconducting electrolytes, e.g. TCNQ
  • H01G 9/035 - Liquid electrolytes, e.g. impregnating materials
  • H01G 9/145 - Liquid electrolytic capacitors
  • H01G 9/15 - Solid electrolytic capacitors

45.

VISCOSITY INDEX IMPROVER COMPOSITION AND LUBRICATING OIL COMPOSITION

      
Application Number JP2021030641
Publication Number 2022/039266
Status In Force
Filing Date 2021-08-20
Publication Date 2022-02-24
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Naito, Nobuhiro
  • Yamashita, Hiroki
  • Yoshida, Kenyuu
  • Hagihara, Hiroki

Abstract

The purpose of the present invention is to provide a viscosity index improver composition having an excellent viscosity index improving effect and being capable of obtaining a lubricating oil composition having an excellent defoaming property and excellent defoaming-property persistence. The present invention relates inter alia, to a viscosity index improver composition that contains a (co)polymer (A) having a monomer (a) represented by general formula (1) as an essential monomer, a C18-40 chain aliphatic alcohol (B), and a base oil. (R1is a hydrogen atom or a methyl group; –X1– is a group represented by –O– or –NH–; R2is a C2-4 alkylene group; R3and R4are each independently a C8-24 linear or branched alkyl group; p is an integer of 0–20; and when p is 2 or higher, R2 may be the same or different.)

IPC Classes  ?

  • C10M 161/00 - Lubricating compositions characterised by the additive being a mixture of a macromolecular compound and a non-macromolecular compound, each of these compounds being essential
  • C10N 20/02 - Viscosity; Viscosity index
  • C10N 20/04 - Molecular weight; Molecular weight distribution
  • C10N 30/02 - Pour-point; Viscosity index
  • C10N 30/18 - Anti-foaming property
  • C10N 40/04 - Oil-bath; Gear-boxes; Automatic transmissions; Traction drives
  • C10N 40/06 - Instruments or other precision apparatus, e.g. damping fluids
  • C10N 40/08 - Hydraulic fluids, e.g. brake-fluids
  • C10N 40/25 - Internal-combustion engines
  • C10M 129/06 - Hydroxy compounds having hydroxy groups bound to acyclic or cycloaliphatic carbon atoms
  • C10M 129/90 - Hydroxy compounds having hydroxy groups bound to acyclic or cycloaliphatic carbon atoms
  • C10M 145/14 - Acrylate; Methacrylate

46.

CHARGEABILITY IMPARTING AGENT, CHARGEABLE RESIN COMPOSITION AND CHARGED NONWOVEN FABRIC

      
Application Number JP2021025587
Publication Number 2022/014431
Status In Force
Filing Date 2021-07-07
Publication Date 2022-01-20
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Ikeda, Yuki
  • Nakamura, Yasushi
  • Tokunaga, Hironobu

Abstract

The purpose of the present invention is to provide a chargeability imparting agent which provides a charged nonwoven fabric with good appearance. The present invention relates to: a chargeability imparting agent (Z) for thermoplastic resins, said chargeability imparting agent containing an organic fluorine-modified polyolefin (A) that has at least one organic group having a fluorohydrocarbon group at a molecular end and/or a molecular side chain of a polyolefin; a chargeable resin composition (Y0) which contains the chargeability imparting agent (Z) for thermoplastic resins and a thermoplastic resin (B); and a charged nonwoven fabric (Y) which is obtained by processing the chargeable resin composition (Y0).

IPC Classes  ?

  • C08L 101/00 - Compositions of unspecified macromolecular compounds
  • C08F 8/20 - Halogenation
  • C08F 214/18 - Monomers containing fluorine
  • C08L 23/28 - Compositions of homopolymers or copolymers of unsaturated aliphatic hydrocarbons having only one carbon-to-carbon double bond; Compositions of derivatives of such polymers modified by chemical after-treatment by reaction with halogens or halogen-containing compounds
  • C08L 27/12 - Compositions of homopolymers or copolymers of compounds having one or more unsaturated aliphatic radicals, each having only one carbon-to-carbon double bond, and at least one being terminated by a halogen; Compositions of derivatives of such polymers not modified by chemical after-treatment containing fluorine atoms
  • D04H 1/42 - Non-woven fabrics formed wholly or mainly of staple fibres or like relatively short fibres from fleeces or layers composed of fibres without existing or potential cohesive properties characterised by the use of certain kinds of fibres insofar as this use has no preponderant influence on the consolidation of the fleece
  • D06M 15/227 - Macromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds of hydrocarbons, or reaction products thereof, e.g. afterhalogenated or sulfochlorinated

47.

ANTISTATIC AGENT, ANTISTATIC RESIN COMPOSITION, AND MOLDED ARTICLE

      
Application Number JP2020043639
Publication Number 2022/009445
Status In Force
Filing Date 2020-11-24
Publication Date 2022-01-13
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Sugimoto, Yuko
  • Fujita, Shinichi

Abstract

The purpose of the present invention is to provide an antistatic agent capable of imparting excellent antistatic properties to a thermoplastic resin. The antistatic agent (Z) according to the present invention comprises a block polymer (A) having a block of a polyamide (a) and a block of a polyether (b1) as constituent units, in which the polyether (b1) contains propylene oxide (PO) and ethylene oxide (EO) as constituent monomers, and the ratio of the weight of the propylene oxide (PO) to that of the ethylene oxide (EO) [propylene oxide (PO)/ethylene oxide (EO)] is 1/99 to 25/75.

IPC Classes  ?

  • C08K 5/3445 - Five-membered rings
  • C08L 77/00 - Compositions of polyamides obtained by reactions forming a carboxylic amide link in the main chain; Compositions of derivatives of such polymers
  • C08L 101/00 - Compositions of unspecified macromolecular compounds
  • C09K 3/16 - Anti-static materials

48.

POLYURETHANE UREA RESIN, ELASTOMER COMPOSITION USING SAME, POLYURETHANE UREA RESIN SOLUTION, POLYURETHANE UREA RESIN AQUEOUS DISPERSION, PAINT, INK, COATING AGENT, AND ADHESIVE

      
Application Number JP2021025302
Publication Number 2022/009834
Status In Force
Filing Date 2021-07-05
Publication Date 2022-01-13
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor Fujioka, Masataka

Abstract

This polyurethane urea resin (U) has as essential constituent monomers thereof polyol (A), polyisocyanate (B), and a chain extender (C) having a number average molecular weight or chemical formula weight of less than 500. The polyol (A) includes a polyfarnesene polyol (A1) and/or a hydrogenated product (A2) of the polyfarnesene polyol (A1). The chain extender (C) contains at least one type of compound selected from the group consisting of: a diamine (C11) that has a cyclic skeleton other than an aromatic ring; a diamine (C12) that does not have a ring skeleton and does have a chain hydrocarbon group including a heteroatom other than a nitrogen atom in the chain; a diamine (C13) other than the diamines (C11) and (C12), that has a hydroxy group; a triamine (C14) that has a cyclic skeleton other than an aromatic ring; and a triamine (C15) that has a chain hydrocarbon group and does not have a cyclic skeleton; and water. The urea group concentration in the polyurethane urea resin (U) is 0.05–1.5 mmol/g.

IPC Classes  ?

  • C09D 175/00 - Coating compositions based on polyureas or polyurethanes; Coating compositions based on derivatives of such polymers
  • C09J 175/00 - Adhesives based on polyureas or polyurethanes; Adhesives based on derivatives of such polymers
  • C09D 11/102 - Printing inks based on artificial resins containing macromolecular compounds obtained by reactions other than those only involving unsaturated carbon-to-carbon bonds
  • C08G 18/00 - Polymeric products of isocyanates or isothiocyanates
  • C08G 18/62 - Polymers of compounds having carbon-to-carbon double bonds
  • C08G 18/65 - Low-molecular-weight compounds having active hydrogen with high-molecular-weight compounds having active hydrogen

49.

CURABLE COMPOSITION, URETHANE RESIN, AND HEAT DISSIPATION MEMBER

      
Application Number JP2021023790
Publication Number 2021/261519
Status In Force
Filing Date 2021-06-23
Publication Date 2021-12-30
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Ikeda, Shunsuke
  • Ohta, Tomoya
  • Yoshimoto, Ryo
  • Mori, Koichi

Abstract

A purpose of the present invention is to provide: a urethane resin having excellent thermal conductivity and excellent flexibility; and a heat dissipation member. The present invention is a curable composition that contains a polyol (A), a polyisocyanate (B), at least one dispersant (C) for an inorganic filler selected from the group consisting of phosphoric acid esters (C1) represented by general formula (1), C12-24 fatty acids (C2), sucrose fatty acid esters (C3), sorbitan fatty acid esters (C4), and glycerin fatty acid esters (C5), and an inorganic filler (D) and satisfies (1)-(3) below. (1) The polyol (A) contains 50 wt% or more, based on the weight of the polyol (A), of a polyalkylene glycol (A1) having a chemical formula weight or number average molecular weight of 1000 or less. (2) The inorganic filler (D) is contained in an amount of 70-97 wt% based on the weight of the curable composition. (3) The total weight of the dispersant (C) for an inorganic filler is 1-5 weight parts per 100 weight parts of the inorganic filler (D).

IPC Classes  ?

50.

ANTISTATIC AGENT, ANTISTATIC RESIN COMPOSITION, AND MOLDED PRODUCT

      
Application Number JP2020043636
Publication Number 2021/240844
Status In Force
Filing Date 2020-11-24
Publication Date 2021-12-02
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Sugimoto, Yuko
  • Fujita, Shinichi

Abstract

The objective of the present invention is to provide an antistatic agent which imparts excellent antistatic properties to a thermoplastic resin. The antistatic agent according to the present invention comprises: a block polymer (A) having, as constituent units, a block of polyimide (a) and a block of a hydrophilic polymer (b); and an amide-forming monomer (c), wherein "the amide-forming monomer (c)/the block polymer (A)", which is a weight ratio of the amide-forming monomer (c) to the block polymer (A), is 2/98 to 12/88.

IPC Classes  ?

51.

ALDEHYDE SCAVENGER AND RESIN COMPOSITION

      
Application Number JP2021018116
Publication Number 2021/230303
Status In Force
Filing Date 2021-05-12
Publication Date 2021-11-18
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Kita, Ai
  • Matsumoto, Makoto

Abstract

The purpose of the present invention is to provide an aldehyde scavenger that has excellent aldehyde scavenging properties and that yields a resin composition having excellent moldability (mold fouling resistance) when added to a resin. The present invention relates to an aldehyde scavenger containing: (1) a copolymer (A) including (meth)acrylamide (a) and an unsaturated monomer (b) having an acid group as constituent monomers; and/or (2) a mixture of a (co)polymer (B) including (meth)acrylamide (a) as a constituent monomer and not including the unsaturated monomer (b) having an acid group as a constituent monomer and a (co)polymer (C) including the unsaturated monomer (b) having an acid group as a constituent monomer and not including (meth)acrylamide (a) as a constituent monomer.

IPC Classes  ?

  • C08F 220/56 - Acrylamide; Methacrylamide
  • B01J 20/26 - Synthetic macromolecular compounds
  • B01J 20/28 - Solid sorbent compositions or filter aid compositions; Sorbents for chromatography; Processes for preparing, regenerating or reactivating thereof characterised by their form or physical properties
  • A61L 9/01 - Deodorant compositions
  • A61L 9/014 - Deodorant compositions containing sorbent material, e.g. activated carbon

52.

POLYURETHANE UREA RESIN, COATING MATERIAL, AND PRINTING INK

      
Application Number JP2021016212
Publication Number 2021/220917
Status In Force
Filing Date 2021-04-21
Publication Date 2021-11-04
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Fujioka, Masataka
  • Tode, Yoshiki

Abstract

The purpose of the present invention is to provide: a polyurethane urea resin which makes it possible to achieve a high concentration of a binder resin in a coating material and a printing ink without lowering coating film properties such as coating film strength and adhesiveness to base materials such as various plastics, steel sheets, and the like; and a coating material and a printing ink which contain the polyurethane urea resin. The present invention is a polyurethane urea resin (U) that has, as the essential structural units thereof, a vinyl polymer (A) that has two hydroxyl groups, a polyol (B) other than (A) that has a number average molecular weight of not less than 500, a polyamine (C) that has a number average molecular weight or chemical formula weight of less than 500, and a polyisocyanate (D), wherein: the vinyl polymer (A) is a reaction product of a chain transfer agent having two hydroxyl groups and one mercapto group and a vinyl monomer component containing an alkyl (meth)acrylate (a1) that has a chain alkyl group which has 4-18 carbon atoms; among the structural units, the weight ratio {(A)/(B)} of the vinyl polymer (A) to the polyol (B) is 1/99 to 80/20; and the proportion by weight of units derived from the alkyl (meth)acrylate (a1) contained in the vinyl polymer (A) is not less than 30 wt% with respect to the combined weight of all vinyl monomer-derived units contained in the vinyl polymer (A).

IPC Classes  ?

  • C09D 175/00 - Coating compositions based on polyureas or polyurethanes; Coating compositions based on derivatives of such polymers
  • C09D 11/102 - Printing inks based on artificial resins containing macromolecular compounds obtained by reactions other than those only involving unsaturated carbon-to-carbon bonds
  • C08G 18/62 - Polymers of compounds having carbon-to-carbon double bonds
  • C08G 18/65 - Low-molecular-weight compounds having active hydrogen with high-molecular-weight compounds having active hydrogen

53.

POLYURETHANE RESIN AQUEOUS DISPERSION

      
Application Number JP2021007240
Publication Number 2021/172485
Status In Force
Filing Date 2021-02-26
Publication Date 2021-09-02
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Makino, Hiroki
  • Yamane, Masumi
  • Watanabe, Masahiro

Abstract

The present invention addresses the problem of providing a polyurethane resin aqueous dispersion that has excellent storage stability and washability when being used in a paint gun and that can provide a coating having excellent post-painting appearance, water-resistant adhesiveness, and hot water-resistant adhesiveness. A polyurethane resin aqueous dispersion (Q) according to the present invention contains: an aqueous medium; and a polyurethane resin (U) having an acidic group and including, as an essential structural monomer, an active hydrogen component (A) and an organic polyisocyanate component (B), and/or a polyurethane resin (U1) obtained by neutralizing the acidic group included in the polyurethane resin (U). The polyurethane resin (U) has a hydroxyl group. The acid value of the polyurethane resin (U) is 5-18 mgKOH/g. The viscosity of the polyurethane resin (U) at 25°C as measured using a rheometer at a shear rate of 0.1/s is 100-1,000,000 Pa·s.

IPC Classes  ?

54.

WASTEWATER TREATMENT METHOD AND WASTEWATER TREATMENT APPARATUS

      
Application Number JP2020048101
Publication Number 2021/132304
Status In Force
Filing Date 2020-12-23
Publication Date 2021-07-01
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor Suzuki, Ryosuke

Abstract

The purpose of the present invention is to provide a wastewater treatment method and a wastewater treatment apparatus, in each of which an enzymatic activity by a microorganism can be improved to reduce a load on a biological treatment tank in a wastewater treatment and thereby inhibit the formation of bulking, and a wastewater treatment efficiency can be improved to reduce the energy cost of an aeration tank. The wastewater treatment method of the present invention comprises: a step of producing a culture solution for wastewater treatment use, the step comprising culturing a microorganism capable of secreting/producing a protein (A) that contributes to the decomposition of an organic substance in wastewater in a surfactant-containing culture solution that contains a surfactant (B) in a culture tank to allow the microorganism to secrete/produce the protein (A), thereby producing a culture solution for wastewater treatment use which contains the microorganism, the protein (A) and the surfactant (B); a culture solution addition step comprising adding the culture solution for wastewater treatment use to the wastewater from the culture tank; and a wastewater treatment step comprising carrying out the treatment of the wastewater with activated sludge in the presence of the culture solution for wastewater treatment use in a biological treatment tank.

IPC Classes  ?

  • C02F 3/00 - Biological treatment of water, waste water, or sewage
  • C02F 3/12 - Activated sludge processes
  • C12M 1/00 - Apparatus for enzymology or microbiology

55.

TWO-PART CURABLE URETHANE ADHESIVE, CURED PRODUCT OF TWO-PART CURABLE URETHANE ADHESIVE, AND URETHANE ADHESIVE SHEET

      
Application Number JP2020048711
Publication Number 2021/132558
Status In Force
Filing Date 2020-12-25
Publication Date 2021-07-01
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Tanaka, Yuuki
  • Shimada, Tetsuya
  • Kondo, Shinya

Abstract

The purpose of the present invention is to provide a two-part curable urethane adhesive whereby it is possible to obtain an adhesive sheet that exhibits excellent cured film properties, can be peeled off with very little force, and exhibits little change in adhesive strength before and after a heat resistance test. The present invention is a two-part curable urethane adhesive including a main agent and a curing agent, wherein the main agent includes a urethane resin (P) that has a hydroxyl group and is obtained by reacting a polyol component (a) that has a polyfunctional polyoxyalkylene polyol (a1) having a hydroxyl value of 10-350 mgKOH/g as an essential component with a urethane prepolymer (b) having an isocyanate group. The polyfunctional polyoxyalkylene polyol (a1) is a polyoxyalkylene polyol (a11) having a hydroxypropyl group on the end of the molecule represented by general formula (1) and/or an ethylene oxide addition product (a12) thereof, and the curing agent includes a crosslinking agent (D) having an isocyanate group. In general formula (1), X is an m-valent residue obtained by removing all of the active hydrogen atoms from a compound having m of active hydrogen atoms, A is an alkylene group that has 2-12 carbons atoms and that may be substituted with a phenyl group, a halophenyl group, or a halogen atom, Z is a propylene group, m is an integer of 4-10, p is an integer of 0-199, q is an integer of 1-200, and the expression 1 ≤ p + q ≤ 200 is satisfied.

IPC Classes  ?

56.

LIQUID COMPONENT FOR ELECTROLYTIC CAPACITOR AND ELECTROLYTIC CAPACITOR

      
Application Number JP2020045670
Publication Number 2021/117721
Status In Force
Filing Date 2020-12-08
Publication Date 2021-06-17
Owner
  • PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD. (Japan)
  • SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Tsubaki Yuichiro
  • Aoyama Tatsuji
  • Saito Kazuyo
  • Chen Liyi
  • Uchihashi Kengo

Abstract

This liquid component for an electrolytic capacitor contains: at least one central atom selected from the group consisting of boron, aluminum, and silicon; and a ligand having a plurality of coordinating atoms bonded to the central atom. The coordinating atoms are at least one selected from the group consisting of oxygen and nitrogen and are bonded to a carbon atom that does not have an oxo group.

IPC Classes  ?

  • H01G 9/035 - Liquid electrolytes, e.g. impregnating materials
  • H01G 9/145 - Liquid electrolytic capacitors
  • H01G 9/15 - Solid electrolytic capacitors

57.

BRONCHIAL EMBOLIZATION MATERIAL

      
Application Number JP2020044316
Publication Number 2021/112014
Status In Force
Filing Date 2020-11-27
Publication Date 2021-06-10
Owner
  • KYOTO UNIVERSITY (Japan)
  • SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Sato, Toshihiko
  • Ueda, Yuichiro
  • Kawabata, Shingo
  • Somamoto, Satoshi

Abstract

A problem addressed by the present invention is to provide a bronchial embolization material capable of tissue repair and replacement. This bronchial embolization material contains a protein (A), wherein: the protein (A) has a polypeptide chain (Y) and/or a polypeptide chain (Y'); the total number of the polypeptide chains (Y) and the polypeptide chains (Y') in the protein (A) is 1-100; in the polypeptide chain (Y) are a contiguous 2-200 of at least one amino acid sequence (X) among a VPGVG sequence (1), which is an amino acid sequence represented by SEQ ID NO: 1, a GVGVP sequence (4), which is an amino acid sequence represented by SEQ ID NO: 4, a GPP sequence, a GAP sequence, and a GAHGPAGPK sequence (3), which is an amino acid sequence represented by SEQ ID NO: 3; in the polypeptide chain (Y'), no more than 5% of the amino acids in the polypeptide chain (Y) have been substituted by lysine and/or arginine; the total number of lysines and the arginines is 1-100; the protein (A) satisfies the relational expression (1) below; the density of the bronchial embolization material is 90-450 mg/cm3; and the bronchial embolization material satisfies relational expression (2) below. (1) 0.50 ≦ (total number of amino acids constituting the amino acid sequence (X) contained in the protein (A) and amino acids constituting an amino acid sequence (X') contained in the protein (A))/(total number of amino acids constituting the protein (A)) ≦ 0.80 (where the amino acid sequence (X') is an amino acid sequence in which no more than 60% of the amino acids in the amino acid sequence (X) have been substituted by lysine and/or arginine) (2) 0.01≦Q/P (where: P is the weight of a dry product (DP) obtained by drying the bronchial embolization material for three hours at 100°C at 1 atm, then drying said material for 15 hours at 40°C at 1 atm; and Q is the weight of the product (DQ) obtained by soaking the dry product (DP) for 72 hours at 25°C at 1 atm in water having 1,000-fold the weight of P, removing the soaked product, drying said product for three hours at 100°C at 1 atm, and then drying said product for 15 hours at 40°C at 1 atm.)

IPC Classes  ?

  • C07K 5/083 - Tripeptides the side chain of the first amino acid being acyclic, e.g. Gly, Ala
  • C07K 7/06 - Linear peptides containing only normal peptide links having 5 to 11 amino acids
  • C07K 14/00 - Peptides having more than 20 amino acids; Gastrins; Somatostatins; Melanotropins; Derivatives thereof
  • A61L 31/04 - Macromolecular materials
  • A61L 31/14 - Materials characterised by their function or physical properties

58.

AQUEOUS POLYURETHANE DISPERSION, INKJET INK COMPOSITION, AQUEOUS PRINTING INK COMPOSITION, AQUEOUS COATING COMPOSITION, GLUE FOR TEXTILE PRINTING, NONAQUEOUS ELECTROLYTE SECONDARY BATTERY ELECTRODE BINDER, ELECTRODE FOR NONAQUEOUS ELECTROLYTE SECONDARY BATTERIES, AND NONAQUEOUS ELECTROLYTE SECONDARY BATTERY

      
Application Number JP2020042225
Publication Number 2021/095799
Status In Force
Filing Date 2020-11-12
Publication Date 2021-05-20
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Iimuro, Miki
  • Yamane, Masumi

Abstract

The purpose of the present invention is to provide an aqueous polyurethane dispersion which has excellent storage stability, while exhibiting excellent adhesion to a plurality of base materials. The present invention is an aqueous polyurethane dispersion which contains water and a polyurethane resin (U), wherein: the polyurethane resin (U) is obtained by reacting an active hydrogen group-containing compound component (W) with an isocyanate component (B); the active hydrogen group-containing compound component (W) contains a high molecular weight polyol (A); the high molecular weight polyol (A) contains a hydroxyl group-containing polyolefin (A1), but does not contain a polyester polyol (RA) that has a constituent unit represented by general formula (1); the weight ratio of ethylene to α-olefins having from 3 to 8 carbon atoms, said ethylene and α-olefins being constituent monomers of the hydroxyl group-containing polyolefin (A1), namely (ethylene)/(α-olefins) is from 5/95 to 65/35; and the isotacticity of the α-olefin moiety of the hydroxyl group-containing polyolefin (A1) is from 1% to 50%.

IPC Classes  ?

  • C08F 8/06 - Oxidation
  • C09D 5/02 - Emulsion paints
  • C09D 175/04 - Polyurethanes
  • H01M 4/13 - Electrodes for accumulators with non-aqueous electrolyte, e.g. for lithium-accumulators; Processes of manufacture thereof
  • H01M 4/62 - Selection of inactive substances as ingredients for active masses, e.g. binders, fillers
  • C09D 11/30 - Inkjet printing inks
  • C08G 18/00 - Polymeric products of isocyanates or isothiocyanates
  • C08G 18/08 - Processes
  • C08G 18/62 - Polymers of compounds having carbon-to-carbon double bonds
  • D06P 1/44 - General processes of dyeing or printing textiles or general processes of dyeing leather, furs or solid macromolecular substances in any form, classified according to the dyes, pigments or auxiliary substances employed using insoluble pigments or auxiliary substances, e.g. binders

59.

ADHESIVE, ADHESIVE SHEET AND OPTICAL MEMBER

      
Application Number JP2020039144
Publication Number 2021/075558
Status In Force
Filing Date 2020-10-16
Publication Date 2021-04-22
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Shimada, Tetsuya
  • Tanaka, Yuuki
  • Kondo, Shinya

Abstract

The purpose of the present invention is to provide a urethane adhesive which has good balance among properties and exhibits excellent flexibility, while having low temperature dependence of viscoelasticity from low temperatures to high temperatures, and which exhibits excellent adhesion to a polar adherend, while being easily controlled in terms of molecular weight increase, thereby enabling the achievement of an adhesive film that has high strength and low possibility of contaminating an adherend. The present invention is an adhesive which contains a polyurethane resin that comprises, as essential constituent monomers, (A) a polyol component that does not have an amino group and (B) an isocyanate component, wherein: the weight average molecular weight of the polyurethane resin is from 50,000 to 2,000,000; the polyol component (A) that does not have an amino group contains (a1) a polyoxyalkylene polyol; the polyoxyalkylene polyol (a1) has a hydroxypropyl group at an end of the molecule; the polyoxyalkylene polyol (a1) has a primary hydroxyl group content of 40% or more; and the 180 degree peel strength as determined at peeling rate of 300 mm/minute at 23°C after being compression bonded to a glass plate by means of a 2 kg roller is from 5 to 50 N/25 mm.

IPC Classes  ?

60.

MAGNETIC PARTICLE COMPOSITION, USE OF MAGNETIC PARTICLE COMPOSITION FOR NUCLEIC ACID SEPARATION, KIT FOR OBTAINING MAGNETIC PARTICLE COMPOSITION, MAGNETIC PARTICLES, CHAOTROPIC SALT, AND SEPARATION AND PURIFICATION METHOD

      
Application Number JP2020034009
Publication Number 2021/054209
Status In Force
Filing Date 2020-09-08
Publication Date 2021-03-25
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Ueda, Masumi
  • Sakuma, Kohei
  • Tanaka, Yuya

Abstract

This magnetic particle composition (e) contains: magnetic particles (c) having core particles (P) which are magnetic silica particles containing magnetic metal oxide particles (A); and a chaotropic salt (D), wherein the weight proportion of the magnetic metal oxide particles (A) contained in the core particles (P) is at least 60 wt% with respect to the weight of the core particles (P), and the coefficient of variation in the particle size distribution of the magnetic particles (c) is 5-50%.

IPC Classes  ?

  • C01B 33/12 - Silica; Hydrates thereof, e.g. lepidoic silicic acid
  • B03C 1/00 - Magnetic separation
  • B03C 1/01 - Pretreatment specially adapted for magnetic separation by addition of magnetic adjuvants
  • C01B 33/18 - Preparation of finely divided silica neither in sol nor in gel form; After-treatment thereof
  • C12N 15/10 - Processes for the isolation, preparation or purification of DNA or RNA
  • G01N 33/552 - Glass or silica

61.

SECONDARY BATTERY MODULE

      
Application Number JP2020033696
Publication Number 2021/045222
Status In Force
Filing Date 2020-09-04
Publication Date 2021-03-11
Owner
  • SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
  • APB CORPORATION (Japan)
Inventor
  • Kawasaki Yohji
  • Mizuno Yusuke
  • Horie Hideaki

Abstract

The present disclosure provides a secondary battery module with which it is possible to optically transmit measurement data of characteristics of single cells constituting an assembled battery, and the troublesomeness of labor of wiring is reduced. This secondary battery module is provided with: an assembled battery obtained by connecting a plurality of single cell units each provided with a single cell including a stacking unit having a set of a positive electrode material, an ion-permeable material or ion-conducting material, and a negative electrode material which are stacked in order, and an electrolyte, and a light emitting part which measures the characteristic of the single cell and generates an optical signal corresponding to the characteristic; and an optical waveguide which is provided on the outer surface of the assembled battery and into which the optical signal from the light emitting part of each of the single cell units is introduced. The number of optical waveguides is smaller than the number of optical signals, and the optical waveguide provides a common optical path through which the optical signals from the plurality of light emitting parts provided in the assembled battery propagate.

IPC Classes  ?

  • H01M 2/10 - Mountings; Suspension devices; Shock absorbers; Transport or carrying devices; Holders
  • H01M 10/052 - Li-accumulators
  • H01M 10/0566 - Liquid materials
  • H01M 10/48 - Accumulators combined with arrangements for measuring, testing or indicating the condition of cells, e.g. the level or density of the electrolyte

62.

MULTILAYER FILM

      
Application Number JP2020025615
Publication Number 2021/002342
Status In Force
Filing Date 2020-06-30
Publication Date 2021-01-07
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Sawada, Masafumi
  • Yanagida, Masaki

Abstract

The present invention provides a film having excellent scratch-resistance and also having excellent flex-resistance. The present invention relates to a multilayer film comprising a base layer and a surface layer formed upon the base layer. The surface layer contains a polyurethane resin (U1) comprising: an active hydrogen ingredient (A1) containing, as an essential ingredient, a compound (a1) having a polyorganosiloxane group and an active hydrogen group; and an isocyanate ingredient (B1). The elastic recovery rate of the polyurethane resin (U1) at 100% elongation is 50 to 100%. The base layer contains a polyurethane resin (U2) comprising an active hydrogen ingredient (A2) and an isocyanate ingredient (B2). The active hydrogen ingredient (A2) contains a polymer polyol (a2) as an essential ingredient, and does not contain the compound (a1) having the polyorganosiloxane group and the active hydrogen group. The elastic recovery rate of the polyurethane resin (U2) at 100% elongation is 80 to 100%.

IPC Classes  ?

  • B32B 27/40 - Layered products essentially comprising synthetic resin comprising polyurethanes
  • C08G 18/38 - Low-molecular-weight compounds having hetero atoms other than oxygen
  • C08G 18/44 - Polycarbonates

63.

TONER BINDER

      
Application Number JP2020012610
Publication Number 2020/261676
Status In Force
Filing Date 2020-03-23
Publication Date 2020-12-30
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Honda, Masaru
  • Chiba, Hiroshi

Abstract

The purpose of the present invention is to provide an excellent toner binder that satisfies all of heat resistance storage stability, electrification maintenance rate (particularly, electrification maintenance rate at high temperature and high humidity), blocking properties, image strength, pulverizability, odor, and durability while maintaining low-temperature fixability and hot offset resistance. The present invention pertains to a toner binder containing a polyester resin (A) and a crystalline vinyl resin (B), wherein the polyester resin (A) contains a resin obtained by crosslinking a polyester resin (A1) with an epoxy compound (E).

IPC Classes  ?

64.

VISCOSITY INDEX-IMPROVING COMPOSITION AND LUBRICATING OIL COMPOSITION

      
Application Number JP2020023470
Publication Number 2020/262088
Status In Force
Filing Date 2020-06-15
Publication Date 2020-12-30
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Sato, Ryota
  • Yamashita, Hiroki
  • Yoshida, Kazunori

Abstract

The purpose of the present invention is to provide: a viscosity index-improving composition which has a low 100°C HTHS viscosity and excellent shear stability and low-temperature viscosity; and a lubricating oil composition. The present invention pertains to a viscosity index-improving composition (C) containing: a copolymer (A) which contains a polyolefin monomer (a) represented by general formula (1) as a constituent monomer; a copolymer (B) which contains a (meth)acrylic acid alkyl ester (c) which has a C12-15 straight chain or branched alkyl group and a (meth)acrylic acid alkyl ester (d) which has a C16-20 straight chain or branched alkyl group as constituent monomers thereof; and a base oil. Therein, the ratio ((A)/(B)) of the weight-average molecular weight of the copolymer (A) to the weight-average molecular weight of the copolymer (B) is 2-5, and the weight ratio (A/B) of the copolymer (A) to the copolymer (B), which each constitute the viscosity index-improving composition (C) , is 5-100.

IPC Classes  ?

  • C10M 169/04 - Mixtures of base-materials and additives
  • C10N 20/02 - Viscosity; Viscosity index
  • C10N 20/04 - Molecular weight; Molecular weight distribution
  • C10N 30/02 - Pour-point; Viscosity index
  • C10N 30/06 - Oiliness; Film-strength; Anti-wear; Resistance to extreme pressure
  • C10N 40/04 - Oil-bath; Gear-boxes; Automatic transmissions; Traction drives
  • C10N 40/06 - Instruments or other precision apparatus, e.g. damping fluids
  • C10N 40/08 - Hydraulic fluids, e.g. brake-fluids
  • C10M 145/14 - Acrylate; Methacrylate
  • C10M 149/10 - Macromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds containing monomers having an unsaturated radical bound to a nitrogen-containing hetero ring

65.

COSMETIC COMPOSITION

      
Application Number JP2020018018
Publication Number 2020/230617
Status In Force
Filing Date 2020-04-27
Publication Date 2020-11-19
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Wakatsuki, Akiko
  • Hamano, Kosuke

Abstract

A cosmetic composition according to the present invention is characterized by containing the following component (A), component (B), component (C), and component (D): (A) a nonionic surfactant having an HLB value of 8-15; (B) an aliphatic alcohol having 12-24 carbon atoms; (C) water; and (D) an oil-soluble ultraviolet absorber having a melting point of -50°C to 50°C, wherein the molar ratio of the component (A) to the component (B) is 3:97 to 33:67, and when a scattering angle (2θ) measured by the irradiation with X-rays having a wavelength λ of 0.154 nm (Cu-kα) at 25°C using a small angle X-ray scattering measuring device is within the range of 0-5°, the ratio (value of peak II/value of peak I) between the peak angles (2θ) of a peak I firstly detected and a peak II subsequently detected is in the range of 1.8-2.2.

IPC Classes  ?

  • A61K 8/86 - Polyethers
  • A61K 8/02 - Cosmetics or similar toiletry preparations characterised by special physical form
  • A61K 8/37 - Esters of carboxylic acids
  • A61K 8/41 - Amines
  • A61Q 17/04 - Topical preparations for affording protection against sunlight or other radiation; Topical sun tanning preparations

66.

NEGATIVE ELECTRODE ADDDITIVE FOR ALKALINE BATTERY, AND ALKALINE BATTERY

      
Application Number JP2020011677
Publication Number 2020/217782
Status In Force
Filing Date 2020-03-17
Publication Date 2020-10-29
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Kabu Koji
  • Nakano Takayuki
  • Takemura Aya

Abstract

Provided is a negative electrode additive for alkaline battery which has outstanding sedimentation prevention properties for zinc powder and the like in an alkali electrolyte, and which can exhibit performance in a single material. The negative electrode additive contains: a cross-linked polymer (A) which has, as essential constituent monomers, an aqueous vinyl monomer (a1) and/or a hydrolyzable vinyl monomer (a2) and a cross-linking agent (b). The negative electrode additive satisfies the following: (1) the amount of the component of the cross-linkable polymer (A) that can be dissolved in saline solution is 5-20 wt% with respect to the weight of (A); (2) the ratio (Mw/Mn) of Mw to Mn of the component having a molecular weight not exceeding 100,000, from within the component of (A) that can be dissolved in saline solution falls within the range of 4.0-6.0, and the ratio of the surface area of components having a molecular weight not exceeding 100,000 with respect to the total surface area of a GPC chromatogram does not exceed 50%; and (3) the viscosity at 25°C of a mixed solution obtained by adding 2 wt% of the negative electrode additive (G) for alkaline battery to a 40 wt% aqueous solution of potassium hydroxide is 10-60 Pa·s.

IPC Classes  ?

  • H01M 4/06 - Electrodes for primary cells
  • H01M 4/62 - Selection of inactive substances as ingredients for active masses, e.g. binders, fillers

67.

METHOD FOR PRODUCING WATER-ABSORBING RESIN PARTICLES

      
Application Number JP2020010234
Publication Number 2020/213298
Status In Force
Filing Date 2020-03-10
Publication Date 2020-10-22
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Morita Eiji
  • Miyajima Toru
  • Suzuki Kazumitsu

Abstract

Provided is a method for efficiently producing recycled water-absorbing resin particles from, as a raw material, discarded water-absorbing resin particles derived from used sanitary supplies, etc., the recycled water-absorbing resin particles having decreased little in absorption property and having various excellent properties. The method for producing water-absorbing resin particles of the present invention comprises a polymerization step (I) in which an aqueous gel containing a crosslinked polymer (A) of a water-soluble vinyl monomer (a1) is obtained, a gel reduction step (II) in which the aqueous gel is reduced into particles to obtain aqueous-gel particles, a step (Va) in which resin particles including the crosslinked polymer (A) and obtained from the aqueous-gel particles are mixed with a surface-crosslinking agent (d), and a reaction step (Vb) in which the surface-crosslinking agent (d) is reacted, wherein a product (B) of decomposition of water-absorbing resin particles including a crosslinked polymer (A') of a water-soluble vinyl monomer (a1') is added in at least one step selected from among the step (I), the step (II), and one or more steps to be performed after the step (II) but before the reaction step (Vb) for surface crosslinking with the surface-crosslinking agent (d).

IPC Classes  ?

  • C08J 3/12 - Powdering or granulating
  • C08F 20/06 - Acrylic acid; Methacrylic acid; Metal salts or ammonium salts thereof
  • C08J 11/10 - Recovery or working-up of waste materials of polymers by chemically breaking down the molecular chains of polymers or breaking of crosslinks, e.g. devulcanisation

68.

RESIN MODIFIER

      
Application Number JP2020011364
Publication Number 2020/196007
Status In Force
Filing Date 2020-03-16
Publication Date 2020-10-01
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Nakata, Yosuke
  • Higuchi, Shintaro

Abstract

The purpose of the present invention is to provide a resin modifier which imparts, to thermoplastic resins, excellent adhesion to coating materials, printing inks, adhesives, etc. The resin modifier (K) of the present invention comprises an acid-modified polyolefin (X) comprising, as constituent units, a polyolefin (A) and one or more unsaturated carboxylic acids (B), wherein the polyolefin (A) is one formed from, as constituent monomers, ethylene and an α-olefin having 3-8 carbon atoms, in an ethylene/(α-olefin having 3-8 carbon atoms) weight ratio of 2/98 to 50/50, the unsaturated carboxylic acids (B) comprise an unsaturated monocarboxylic acid, an unsaturated polycarboxylic acid, and/or an unsaturated polycarboxylic anhydride, and the acid-modified polyolefin (X) satisfies all of the following requirements (1) to (3): (1) to have an acid value of 1-100 mg-KOH/g; (2) to have a number-average molecular weight (Mn) of 1,000-60,000; and (3) to have an isotacticity in the α-olefin moieties of 1-50%.

IPC Classes  ?

  • C08F 8/46 - Reaction with unsaturated dicarboxylic acids or anhydrides thereof, e.g. maleinisation
  • C08F 210/16 - Copolymers of ethene with alpha-alkenes, e.g. EP rubbers
  • C08L 23/02 - Compositions of homopolymers or copolymers of unsaturated aliphatic hydrocarbons having only one carbon-to-carbon double bond; Compositions of derivatives of such polymers not modified by chemical after-treatment
  • C08L 23/26 - Compositions of homopolymers or copolymers of unsaturated aliphatic hydrocarbons having only one carbon-to-carbon double bond; Compositions of derivatives of such polymers modified by chemical after-treatment
  • C08J 5/00 - Manufacture of articles or shaped materials containing macromolecular substances
  • C08J 7/04 - Coating

69.

POLYOL COMPOSITION FOR PRODUCING FLEXIBLE POLYURETHANE FOAM, AND FLEXIBLE POLYURETHANE FOAM

      
Application Number JP2020006856
Publication Number 2020/175324
Status In Force
Filing Date 2020-02-20
Publication Date 2020-09-03
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Tahara, Takuma
  • Hirano, Tomohisa
  • Sato, Tomo

Abstract

A purpose of the present invention is to provide a polyol composition that manifests excellent low impact resilience at room temperature and is capable of producing a flexible polyurethane foam with good breathability. The present invention is a polyol composition (C) for producing a flexible polyurethane foam that contains a polyester polyol (A) and a polyether polyol (B) and satisfies (1)-(4). (1) The ester group concentration in the polyol composition (C) is 0.4-4.0 mmol/g based on the weight of the polyol composition (C); (2) the content of oxyethylene group units in the polyol composition (C) is 15-40 wt% based on the weight of the polyol composition (C); (3) the polyester polyol (A) contains a polyester polyol (A1) having 2-4 hydroxyl groups per molecule obtained by polymerizing a raw material including a polyvalent hydroxyl group-containing compound (a) and a polycarboxylic acid or an acid anhydride thereof; (4) the polyether polyol (B) contains a polyether polyol (B1) having an oxyethylene group.

IPC Classes  ?

70.

EMULSIFIER FOR EMULSION POLYMERIZATION, POLYMER, EMULSION, AND METHOD FOR MANUFACTURING EMULSION

      
Application Number JP2020003684
Publication Number 2020/166384
Status In Force
Filing Date 2020-01-31
Publication Date 2020-08-20
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Hashimoto, Naoya
  • Nishimoto, Tsuyoshi
  • Gyotoku, Nami

Abstract

22=C(R12abb-(A1cdd-Y [In general formula (1): Z each independently represent an oxygen atom or a divalent group represented by general formula (2); A1O each independently represent a C8-30 alkyleneoxy group; EO represents an ethyleneoxy group; R1333∙-M+2f32f33∙-M+; M+bbb does not have a constituent element represented by A1O.] [In general formula (2), R2 each independently represent a hydrogen atom, a methyl group, or an ethyl group.]

IPC Classes  ?

  • C08F 2/24 - Emulsion polymerisation with the aid of emulsifying agents
  • B01F 17/42 - Ethers, e.g. polyglycol ethers of alcohols or phenols

71.

TWO-PACK CURABLE URETHANE ADHESIVE

      
Application Number JP2019048000
Publication Number 2020/121993
Status In Force
Filing Date 2019-12-09
Publication Date 2020-06-18
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Narutaki, Yuko
  • Shimada, Tetsuya
  • Tanaka, Yuuki

Abstract

The purpose of the present invention is to provide a two-pack curable urethane adhesive which is easily handleable, while containing substantially no solvent, and which has weak to strong adhesiveness and forms a cured film that has excellent physical properties. The present invention is a two-pack curable urethane adhesive which contains a base material and a curing agent, and which is configured such that: the base material contains a urethane prepolymer (P1) having a hydroxyl group, which is obtained by reacting a polyol component (A) and an organic polyisocyanate component (B), and/or a polyol component (A); the curing agent contains a urethane prepolymer (P2) having an isocyanate group, which is obtained by reacting a polyol component (A) and an organic polyisocyanate component (B), and/or an organic polyisocyanate component (B); and the requirements (1)-(5) described below are satisfied. (1) The polyol component (A) used for the urethane prepolymer (P1) having a hydroxyl group and/or the polyol component (A) used as the base material contains a polyol (A1) that has a group represented by general formula (1) and/or a group represented by general formula (2) at a polymer end; and the ratio of the total number of the groups represented by general formula (1) in the polyol (A1) is 40% or more based on the sum of the number of the groups represented by general formula (1) and the number of the groups represented by general formula (2) in the polyol (A1). (In general formulae (1) and (2), each a independently represents an integer of 0 or more.) (2) The average of the total degrees of unsaturation of all polyol components (A) used in the two-pack curable urethane adhesive is 0.010 meq/g or less. (3) The weight average molecular weights of the urethane prepolymers (P1) and (P2) are 1,000-100,000. (4) The chemical formula weights or the number average molecular weights of the polyol component (A) and the organic polyisocyanate component (B) are 20,000 or less. (5) The ratio of the total weight of the solvent contained in the base material (excluding the polyol component (A)) and the solvent contained in the curing agent (excluding the organic polyisocyanate component (B)) is 5% by weight or less based on the total weight of the base material and the curing agent.

IPC Classes  ?

72.

EASILY DEHYDRATABLE WATER-ABSORBENT RESIN PARTICLES AND PRODUCTION METHOD THEREOF

      
Application Number JP2019037462
Publication Number 2020/105277
Status In Force
Filing Date 2019-09-25
Publication Date 2020-05-28
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Morita Eiji
  • Nakabuchi Takashi
  • Miyajima Toru
  • Suzuki Kazumitsu

Abstract

Provided are: water-absorbent resin particles which have excellent water-absorbent characteristics in normal use and are easily dehydratable after use; a production method thereof; and a method for treating a sanitary article. The present invention relates to water-absorbent resin particles, a sanitary article including the same, and a method for treating the sanitary article, the water-absorbent resin particles containing a cross-linked polymer (A) having, as essential constituent units: a water-soluble vinyl monomer (a1) and/or a vinyl monomer (a2) which becomes the water-soluble vinyl monomer (a1) through hydrolysis; and an internal cross-linking agent (b), wherein the water separation ratio represented by the following equation is 70% or more. Water separation ratio [%] = {1-(water retaining amount after treating with 1.0 wt% of calcium chloride aqueous solution [g/g])/(water retaining amount with respect to physiological saline [g/g])}×100

IPC Classes  ?

  • C08J 3/12 - Powdering or granulating
  • C08J 5/00 - Manufacture of articles or shaped materials containing macromolecular substances

73.

AQUEOUS COMPOSITE RESIN DISPERSION AND METHOD FOR PRODUCING AQUEOUS COMPOSITE RESIN DISPERSION

      
Application Number JP2019045001
Publication Number 2020/105569
Status In Force
Filing Date 2019-11-18
Publication Date 2020-05-28
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Watanabe, Masahiro
  • Yamane, Masumi

Abstract

The present invention is an aqueous composite resin dispersion which contains composite resin particles that contain a polyurethane resin (U) and a vinyl resin (V) within each particle, and which is configured such that: the polyurethane resin (U) is a reaction product of an active hydrogen component (A), an organic isocyanate component (B) and a chain extender (E); at least one of the active hydrogen component (A), the organic isocyanate component (B) and the chain extender (E) contains a tri- or higher functional compound; and a film obtained by drying this aqueous composite resin dispersion satisfies all of the requirements (1)-(3) described below. (1) The gel fraction with respect to N, N-dimethylformamide is 35-100%. (2) The elongation at break is 200-1,000%. (3) The storage elastic modulus E' at 25°C is 100-3,000 MPa.

IPC Classes  ?

  • C08F 2/44 - Polymerisation in the presence of compounding ingredients, e.g. plasticisers, dyestuffs, fillers
  • C08G 18/00 - Polymeric products of isocyanates or isothiocyanates
  • C08G 18/08 - Processes
  • C08G 18/10 - Prepolymer processes involving reaction of isocyanates or isothiocyanates with compounds having active hydrogen in a first reaction step

74.

TOPICAL COMPOSITION

      
Application Number JP2019040370
Publication Number 2020/085134
Status In Force
Filing Date 2019-10-15
Publication Date 2020-04-30
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Suenaga, Erika
  • Sakaguchi, Mika

Abstract

The present invention is a topical composition which contains structural units (a) derived from a monofunctional ethylenic unsaturated monomer (A), structural units (b) derived from a monofunctional ethylenic unsaturated monomer (B), and structural units (c) derived from a monofunctional ethylenic unsaturated monomer (C) as essential structural units, and contains a copolymer (D) free from structural units derived from ethylenic unsaturated monomers having a functionality of 2 or higher. The monomer (A) is free from phosphorus atoms and silicon atoms in the molecule. The monomer (B) has an HLB of 0.3-5.2. The molar ratio of the structural units (a) is 2-55 mol%, the molar ratio of the structural units (b) is 0.01-10 mol%, and the molar ratio of the structural units (c) is 43-97.99 mol%. The ratio (Mw/Mn) of the weight average molecular weight (Mw) to the number average molecular weight (Mn) of the copolymer (D) is 2.0-7.0. The copolymer (D) has a cation charge density of 1.2-1.6 meq/g.

IPC Classes  ?

  • A61K 8/81 - Cosmetics or similar toiletry preparations characterised by the composition containing organic macromolecular compounds obtained by reactions involving only carbon-to-carbon unsaturated bonds
  • A61Q 5/00 - Preparations for care of the hair
  • A61Q 5/02 - Preparations for cleaning the hair
  • A61Q 5/12 - Preparations containing hair conditioners
  • A61Q 19/00 - Preparations for care of the skin
  • A61Q 19/10 - Washing or bathing preparations
  • C08F 220/12 - Esters of monohydric alcohols or phenols
  • C08F 220/34 - Esters containing nitrogen
  • C08F 220/56 - Acrylamide; Methacrylamide
  • C08F 220/60 - Amides containing nitrogen in addition to the carbonamido nitrogen
  • C11D 3/37 - Polymers

75.

METHOD FOR PRODUCING RESIN COLLECTOR FOR NEGATIVE ELECTRODES, METHOD FOR PRODUCING NEGATIVE ELECTRODE FOR LITHIUM ION BATTERIES, AND METHOD FOR PRODUCING LITHIUM ION BATTERY

      
Application Number JP2019041282
Publication Number 2020/085290
Status In Force
Filing Date 2019-10-21
Publication Date 2020-04-30
Owner
  • SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
  • GUNZE LIMITED (Japan)
Inventor
  • Kusano, Ryosuke
  • Tsudo, Yasuhiro
  • Maruyama, Yasuji
  • Onishi, Kazuaki
  • Ohsawa, Yasuhiko
  • Kusachi, Yuki
  • Satou, Hajime
  • Akama, Hiroshi
  • Horie, Hideaki

Abstract

The purpose of the present invention is to provide a method for producing a thin resin collector for negative electrodes, said resin collector being free from pinholes. The present invention is a method for producing a sheet-like resin collector for negative electrodes, which comprises a stacking step wherein three or more layers of a melt of a conductive resin composition containing a polyolefin and a conductive filler are stacked, thereby obtaining a multilayer body, and which is characterized in that the polyolefins contained in the respective conductive resin compositions that constitute the layers of the multilayer body have a melt mass flow rate of 15-70 g/10 min as measured by a method described in JIS K7210-1 (2014) at a temperature of 230°C under a load of 2.16 kg.

IPC Classes  ?

76.

MENISCUS REGENERATION MATERIAL

      
Application Number JP2019037589
Publication Number 2020/071208
Status In Force
Filing Date 2019-09-25
Publication Date 2020-04-09
Owner
  • HIROSHIMA UNIVERSITY (Japan)
  • SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Adachi, Nobuo
  • Kamei, Naosuke
  • Ishikawa, Masakazu
  • Nakasa, Tomoyuki
  • Kawabata, Shingo
  • Yamanaka, Tsubasa

Abstract

The purpose of the present invention is to provide a meniscus regeneration material having a high capacity to regenerate the meniscus. This meniscus regeneration material contains a protein (A). The protein (A) has a polypeptide chain (Y) and/or a polypeptide chain (Y'). The total number of polypeptide chains (Y) and/or polypeptide chains (Y') in the protein (A) is 1 to 100. The polypeptide chain (Y) is a polypeptide chain having 2 to 200 contiguous copies of at least one amino acid sequence (X) selected from the amino acid sequences VPGVG (1) represented by SEQ ID NO:1, GVGVP (4) represented by SEQ ID NO:4, GPP, GAP, and GAHGPAGPK (3) represented by SEQ ID NO:3. The polypeptide chain (Y') is a polypeptide chain where not more than 5% of the amino acid residues of the polypeptide chain (Y) are substituted with lysine and/or arginine residues. The total number of the lysine and/or arginine residues is 1 to 100. The total proportion of β-turn structures and random coil structures in the protein (A) as determined by circular dichroism spectroscopy is 60%-85%. The total number of the amino acid residues constituting the amino acid sequence (X) and the amino acid residues constituting an amino acid sequence (X') relative to the total amino acid residues in the protein (A) is 50%-70%, wherein the amino acid sequence (X') is an amino acid sequence where not more than 60% of the amino acid residues of the amino acid sequence (X) are substituted with lysine and/or arginine residues.

IPC Classes  ?

  • A61L 27/22 - Polypeptides or derivatives thereof
  • A61L 27/36 - Materials for prostheses or for coating prostheses containing ingredients of undetermined constitution or reaction products thereof

77.

POLYURETHANE RESIN COMPOSITION

      
Application Number JP2019032885
Publication Number 2020/054348
Status In Force
Filing Date 2019-08-22
Publication Date 2020-03-19
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Yokoi, Tomomi
  • Sharyo, Kohei

Abstract

Provided is a polyurethane resin composition that: has exceptional blocking resistance, elastic recovery, and residual strain as well as exceptional unwinding properties and smoothness when applied to elastic fibers; has suppressed elevation of the polyurethane spinning dope viscosity over time; and is less likely to generate shed sediment (scum) on the yarn path. This polyurethane resin composition (W) is characterized by: containing a block polymer (X) and a polyurethane resin (U); (X) having any one of a block (a1) composed of a polyester resin free of urethane bonds, a block (a2) composed of a polyester resin having urethane bonds, or a block (a3) composed of a polyurethane resin free of ester bonds, and also having a block (b1) composed of a C16-44 monovalent hydrocarbon group and/or a block (b2) composed of a monovalent polyorganosiloxane group; the polyurethane resin (U) having neither block (b1) nor block (b2); and a polyol that serves as a constituent monomer of the polyurethane resin (U) having no aromatic ring.

IPC Classes  ?

  • C08L 75/04 - Polyurethanes
  • C08L 67/02 - Polyesters derived from dicarboxylic acids and dihydroxy compounds
  • C08L 83/10 - Block- or graft-copolymers containing polysiloxane sequences
  • D01F 6/94 - Monocomponent man-made filaments or the like of synthetic polymers; Manufacture thereof from mixtures of polycondensation products as major constituent with other polymers or low-molecular-weight compounds of other polycondensation products

78.

COMPOSITION, METHOD FOR PRODUCING SAID COMPOSITION, URETHANE RESIN, AND COOLING COMPONENT AND ARTICLE PROVIDED WITH SAID URETHANE RESIN

      
Application Number JP2019032580
Publication Number 2020/040177
Status In Force
Filing Date 2019-08-21
Publication Date 2020-02-27
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Mori, Koichi
  • Ikeda, Shunsuke
  • Ohta, Tomoya

Abstract

The purpose of the present invention is to provide a composition which enables the achievement of a urethane resin through a reaction, said urethane resin having excellent heat dissipation properties and excellent flexibility. A composition according to the present invention contains a polyol (A), a polyisocyanate (B) and an inorganic filler (C). The component (A) contains a polyol (A1) that has at least three hydroxyl groups in each molecule; the isocyanate index of the component (A) and the component (B), namely (the total number of moles of isocyanate groups in the polyisocyanate (B) contained in this composition)/(the total number of moles of hydroxyl groups in the polyol (A) contained in this composition) is 0.20-0.77; and the weight ratio of the component (C) based on the weight of this composition is 70-97% by weight.

IPC Classes  ?

  • C08L 75/04 - Polyurethanes
  • C08G 18/06 - Polymeric products of isocyanates or isothiocyanates with compounds having active hydrogen
  • C08K 3/00 - Use of inorganic substances as compounding ingredients

79.

POLYOL COMPOSITION AND POLYURETHANE FOAM

      
Application Number JP2019032382
Publication Number 2020/040117
Status In Force
Filing Date 2019-08-20
Publication Date 2020-02-27
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor Kono Shoichiro

Abstract

Provided is a polyol composition which has good dispersion stability of a polyurea resin contained therein and maintains a uniform appearance over time as well as during production, and which can be reacted with polyisocyanate to obtain a polyurethane foam having excellent flame retardancy. The present invention pertains to a polyol composition that is used as a raw material for a polyurethane foam containing a urea group-containing reaction product having a compound (A), which has two primary amino groups and at least one polyalkyleneoxy chain (a) in the molecule, and a polyisocyanate (B) as essential raw materials, and being obtained by reacting the primary amino groups of (A) with the isocyanate groups of (B), wherein the polyalkyleneoxy chain (a) is a chain to which 1-100 moles of a C2-4 alkylene oxide have been added.

IPC Classes  ?

  • C08G 18/32 - Polyhydroxy compounds; Polyamines; Hydroxy amines
  • C08G 18/40 - High-molecular-weight compounds
  • C08G 18/50 - Polyethers having hetero atoms other than oxygen
  • C08G 101/00 - Manufacture of cellular products

80.

COATED BIOLOGICALLY ACTIVE SUBSTANCE

      
Application Number JP2019031543
Publication Number 2020/032224
Status In Force
Filing Date 2019-08-09
Publication Date 2020-02-13
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Fukuyama, Yoshiaki
  • Ueda, Masumi
  • Tanaka, Yuya
  • Tobinaga, Kyohei

Abstract

The present invention addresses the problem of providing a coated fertilizer or a coated agrochemical in each of which the temperature dependency of the elution rate of the fertilizer or the agrochemical is low, e.g., a coated fertilizer or a coated agrochemical in which the increase in the elution rate of the fertilizer or the agrochemical in a high-temperature range (e.g., 35°C) is inhibited or in which the difference in elution rates in a low-temperature range (e.g., 15 to 25°C) is small and the temperature dependency is low. The present invention relates to a coated biologically active substance (F) in which particles of a biologically active substance (E) comprising at least one component selected from the group consisting of a fertilizer and an agrochemical are coated with a resin composition (D), wherein the resin composition (D) is a composition containing, as constituent components, a temperature-responsive resin (A) having a lower critical solution temperature (LCST) for water of 10 to 40°C and a water-absorbable resin (B).

IPC Classes  ?

  • C05G 3/00 - Mixtures of one or more fertilisers with additives not having a specifically fertilising activity
  • A01N 25/26 - Biocides, pest repellants or attractants, or plant growth regulators, characterised by their forms, or by their non-active ingredients or by their methods of application; Substances for reducing the noxious effect of the active ingredients to organisms other than pests in coated particulate form

81.

FIBER SIZE COMPOSITION, FIBER SIZE DISPERSION, FIBER SIZE SOLUTION, FIBER BUNDLE, FIBER PRODUCT, AND COMPOSITE MATERIAL

      
Application Number JP2019029492
Publication Number 2020/026991
Status In Force
Filing Date 2019-07-26
Publication Date 2020-02-06
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor Sakaguchi, Sayaka

Abstract

The purpose of the present invention is to provide a fiber size composition which is capable of preventing fuzzing of fiber bundles. Provided is a fiber size composition comprising (A) an aliphatic alcohol alkylene oxide adduct represented by general formula (1) and (B) a compound, wherein (B) is at least one selected from the group consisting of (B1) polyester, (B2) polyurethane, (B3) a compound having an epoxy group, (B4) a compound having a (meth)acryloyl group, and (B5) a polyether compound other than (A) the aliphatic alcohol alkylene oxide adduct. R1mmH (1) [In general formula (1), R1 is an aliphatic hydrocarbon group having 8 to 11 carbon atoms having three or more methyl groups, AO is an alkyleneoxy group having 2 to 4 carbon atoms, and m is a number average addition mole number of alkylene oxide and is 3 to 10.]

IPC Classes  ?

  • D06M 13/17 - Polyoxyalkyleneglycol ethers
  • C08J 5/06 - Reinforcing macromolecular compounds with loose or coherent fibrous material using pretreated fibrous materials
  • D06M 15/263 - Macromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds of unsaturated carboxylic acids; Salts or esters thereof
  • D06M 15/507 - Polyesters
  • D06M 15/53 - Polyethers
  • D06M 15/55 - Epoxy resins
  • D06M 15/564 - Polyureas, polyurethanes or other polymers having ureide or urethane links; Precondensation products forming them
  • D06M 101/36 - Aromatic polyamides
  • D06M 101/40 - Fibres of carbon

82.

SIZING AGENT COMPOSITION FOR FIBERS, FIBER BUNDLE, FIBER PRODUCT AND COMPOSITE MATERIAL

      
Application Number JP2019029825
Publication Number 2020/027126
Status In Force
Filing Date 2019-07-30
Publication Date 2020-02-06
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Sakaguchi, Sayaka
  • Hosogi, Takuya

Abstract

The purpose of the present invention is to provide a sizing agent composition for fibers, which is capable of forming a fiber bundle that is suppressed in fluffing, while exhibiting high adhesion between fibers and a matrix resin and maintaining high seizing properties. A sizing agent composition (C) for fibers according to the present invention is configured to contain: an epoxy resin (A) that has an aromatic ring, while having no (meth)acryloyl group; and a (meth)acrylate (B).

IPC Classes  ?

  • D06M 15/55 - Epoxy resins
  • D06M 15/27 - Macromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds of unsaturated carboxylic acids; Salts or esters thereof of alkylpolyalkylene glycol esters of unsaturated carboxylic acids
  • D06M 15/507 - Polyesters

83.

MOISTURE RESISTANCE IMPROVER FOR WATER-BASED ADHESIVE FOR INORGANIC MATERIALS, AND WATER-BASED ADHESIVE FOR INORGANIC MATERIALS

      
Application Number JP2018027618
Publication Number 2020/021616
Status In Force
Filing Date 2018-07-24
Publication Date 2020-01-30
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Hayashi Miyuki
  • Kita Ai

Abstract

Provided are a moisture resistance improver that yields a water-based adhesive for inorganic materials having exceptional adhesiveness of inorganic materials, and a water-based adhesive for inorganic materials in which the moisture resistance improver is used. The present invention is a moisture resistance improver (J) for a water-based adhesive for inorganic materials, the moisture resistance improver (J) containing at least one (co)polymer (A) selected from the group consisting of (co)polymer (A1) and (co)polymer (A2). (Co)polymer (A1): a (co)polymer having a weight-average molecular weight of 3,000-150,000, and containing, as structural monomers, a C3-30 unsaturated (poly)carboxylic acid (anhydride) (a1) and a (meth)acrylic acid ester (a2) having solubility of 10 g or less per 100 g of water at 25°C (Co)polymer (A2): a (co)polymer having a weight-average molecular weight of 6,000-150,000, and containing the above unsaturated (poly)carboxylic acid (anhydride) (a1) as a structural monomer but not containing the above (meth)acrylic acid ester (a2) as a structural monomer

IPC Classes  ?

  • C09J 201/00 - Adhesives based on unspecified macromolecular compounds
  • B32B 19/02 - Layered products essentially comprising natural mineral fibres or particles, e.g. asbestos, mica bonded with or embedded in a plastic substance
  • C03C 25/10 - Coating
  • C04B 38/00 - Porous mortars, concrete, artificial stone or ceramic ware; Preparation thereof
  • C08J 5/04 - Reinforcing macromolecular compounds with loose or coherent fibrous material
  • C09J 11/06 - Non-macromolecular additives organic
  • C09J 11/08 - Macromolecular additives
  • C09J 103/02 - Starch; Degradation products thereof, e.g. dextrin
  • C09J 129/04 - Polyvinyl alcohol; Partially hydrolysed homopolymers or copolymers of esters of unsaturated alcohols with saturated carboxylic acids
  • D04H 1/4209 - Inorganic fibres
  • D04H 1/58 - Non-woven fabrics formed wholly or mainly of staple fibres or like relatively short fibres from fleeces or layers composed of fibres without existing or potential cohesive properties by applying, incorporating or activating chemical or thermoplastic bonding agents, e.g. adhesives
  • D06M 15/263 - Macromolecular compounds obtained by reactions only involving carbon-to-carbon unsaturated bonds of unsaturated carboxylic acids; Salts or esters thereof
  • D21J 1/08 - Impregnated or coated fibreboard

84.

PLANT GROWTH AID AND PLANT GROWING METHOD

      
Application Number JP2019027136
Publication Number 2020/013177
Status In Force
Filing Date 2019-07-09
Publication Date 2020-01-16
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Ueda, Masumi
  • Tanaka, Yuya
  • Tobinaga, Kyohei

Abstract

The purpose of the present invention is to provide: a plant growth aid that enables the efficient intake of a chemical agent into leaves and exhibits superior properties of chemical agent elution from granules; and a plant growing method. The present invention pertains to: a plant growth aid (X) containing particles (P) of median diameter 1–300 nm that contain a biodegradable resin (A) and a hydrophobic chemical agent (B) that has an octanol/water partition coefficient (LogPow) of 1–10 at 25°C; and a plant growing method that uses this plant growth aid.

IPC Classes  ?

  • A01N 25/10 - Macromolecular compounds
  • A01P 3/00 - Fungicides
  • A01N 43/828 - 1,2,3-Oxa(thia)diazoles; Hydrogenated 1,2,3-oxa(thia)diazoles
  • A01N 53/12 - Compounds containing the group , X or Y being a nitrogen atom, e.g. cyclopropane carboxylic acid amides

85.

COMPOSITION FOR CELL TRANSPLANT, AND METHOD FOR CELL TRANSPLANT

      
Application Number JP2019018606
Publication Number 2019/239751
Status In Force
Filing Date 2019-05-09
Publication Date 2019-12-19
Owner
  • KYOTO UNIVERSITY (Japan)
  • SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Yoshida, Yoshinori
  • Hatani, Takeshi
  • Suzuki, Ryosuke
  • Kawabata, Shingo

Abstract

Provided are a composition for cell transplant and a method for cell transplant that allow myocytes and/or cardiac progenitor cells to be suitably maintained in myocardial tissue and allow the survival and proliferation of transplanted cells to be improved. This composition for cell transplant comprises cells and an aqueous solution of a protein (A), and is characterized in that: the cells are myocardial cells and/or cardiac progenitor cells; protein (A) has a hydrophobicity of 0.2-1.2; the protein (A) has a polypeptide chain (Y) and/or a polypeptide chain (Y'); the total number of polypeptide chains (Y) and polypeptide chains (Y') in the protein (A) is 1-100; the polypeptide chain (Y) is an amino acid sequence (X) repeated 2-100 times, the amino acid sequence being any one of a VPGVG sequence (1) which is an amino acid sequence represented by SEQ ID NO:1, a GVGVP sequence (2) which is an amino acid sequence represented by SEQ ID NO:2, a GPP sequence, a GAP sequence, and a GAHGPAGPK sequence (3), which is an amino acid sequence represented by SEQ ID NO:3; the polypeptide chain (Y') is the polypeptide chain (Y) where 0.1-5% of the amino acid residues thereof are substituted with lysine residues and/or arginine residues; and the total number of the lysine residues and arginine residues is 1-100.

IPC Classes  ?

  • A61L 27/36 - Materials for prostheses or for coating prostheses containing ingredients of undetermined constitution or reaction products thereof
  • A61K 35/34 - Muscles; Smooth muscle cells; Heart; Cardiac stem cells; Myoblasts; Myocytes; Cardiomyocytes
  • A61K 35/545 - Embryonic stem cells; Pluripotent stem cells; Induced pluripotent stem cells; Uncharacterised stem cells
  • A61K 38/16 - Peptides having more than 20 amino acids; Gastrins; Somatostatins; Melanotropins; Derivatives thereof
  • A61K 38/39 - Connective tissue peptides, e.g. collagen, elastin, laminin, fibronectin, vitronectin, cold insoluble globulin [CIG]
  • A61L 27/22 - Polypeptides or derivatives thereof
  • A61L 27/38 - Animal cells
  • A61P 9/00 - Drugs for disorders of the cardiovascular system
  • A61P 9/10 - Drugs for disorders of the cardiovascular system for treating ischaemic or atherosclerotic diseases, e.g. antianginal drugs, coronary vasodilators, drugs for myocardial infarction, retinopathy, cerebrovascula insufficiency, renal arteriosclerosis
  • A61P 29/00 - Non-central analgesic, antipyretic or antiinflammatory agents, e.g. antirheumatic agents; Non-steroidal antiinflammatory drugs [NSAID]

86.

CORE-SHELL PARTICLES, AND METHOD FOR SEPARATING AND PURIFYING SUBSTANCE TO BE SEPARATED USING CORE-SHELL PARTICLES

      
Application Number JP2019022773
Publication Number 2019/240045
Status In Force
Filing Date 2019-06-07
Publication Date 2019-12-19
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Kitagawa, Takahiro
  • Ueda, Masumi

Abstract

The present invention addresses the problem of providing core-shell particles which can be used for a method for separating a substance to be separated and by which a purified product having high purity can be obtained. Core-shell particles (C) according to the present invention each have: a core layer (P) which has magnetic silica particles containing magnetic metal oxide particles (A); and a shell layer (Q) which is a silica layer having an average thickness of 3-3,000 nm and formed on the surface of the core layer (P), wherein the weight percentage of the magnetic metal oxide particles (A) contained in the core layer (P) is 60-95 wt% with respect to the weight of the core layer (P), and the variation coefficient of the particle size distribution of the core-shell particles (C) is 50% or less.

IPC Classes  ?

  • C01G 49/08 - Ferroso-ferric oxide (Fe3O4)
  • B03C 1/00 - Magnetic separation
  • B03C 1/015 - Pretreatment specially adapted for magnetic separation by chemical treatment imparting magnetic properties to the material to be separated, e.g. roasting, reduction, oxidation
  • B03C 1/28 - Magnetic plugs and dipsticks
  • B82Y 40/00 - Manufacture or treatment of nanostructures

87.

TONER BINDER

      
Application Number JP2019016004
Publication Number 2019/225207
Status In Force
Filing Date 2019-04-12
Publication Date 2019-11-28
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Honda, Masaru
  • Yamada, Satoshi

Abstract

The purpose of the present invention is to provide a toner binder used in a toner having an excellent grindability, image strength, heat-resistant storage stability, charging stability, gloss, and durability, while maintaining low-temperature fixability and hot offset resistance. This toner binder contains an amorphous resin (A) and a crystalline vinyl resin (B), and is characterized in that: the weight ratio [(A)/(B)] between (A) and (B) is 81/19 to 97/3; the peak top temperature (Tm) of the crystalline vinyl resin (B)-derived endothermic peak of the toner binder is 40-100°C; the half width of the crystalline vinyl resin (B)-derived endothermic peak is 6°C or below; the acid value of the crystalline vinyl resin (B) is 60 mgKOH/g or below; and relationship (1) is satisfied. Relationship (1): 3°C ≤ Tfb(A) - Tfb(C) ≤ 30°C

IPC Classes  ?

88.

AQUEOUS ADHESIVE FOR INORGANIC MATERIALS

      
Application Number JP2019016197
Publication Number 2019/203198
Status In Force
Filing Date 2019-04-15
Publication Date 2019-10-24
Owner
  • SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
  • MAG-ISOVER KABUSHIKI KAISHA (Japan)
Inventor
  • Hayashi, Miyuki
  • Kita, Ai
  • Tsukamoto, Masaya

Abstract

Provided is an aqueous adhesive that is for inorganic materials and that has excellent adhesion to inorganic materials. The present invention pertains to: an adhesiveness improver (J) that is for an aqueous inorganic material adhesive and that contains a (co)polymer (A) containing, as a constituent monomer, an unsaturated (poly)carboxylic acid (anhydride) (a1) and having a weight average molecular weight of 6,000-200,000; and an aqueous adhesive (X) that is for inorganic materials and that contains the adhesiveness improver (J) for an aqueous inorganic material adhesive, a sugar (B), a polycarboxylic acid (C) having 4-24 carbon atoms, and water.

IPC Classes  ?

  • C09J 133/02 - Homopolymers or copolymers of acids; Metal or ammonium salts thereof
  • C08F 20/18 - Esters of monohydric alcohols or phenols of phenols or of alcohols containing two or more carbon atoms with acrylic or methacrylic acids
  • C08F 22/00 - Homopolymers or copolymers of compounds having one or more unsaturated aliphatic radicals, each having only one carbon-to-carbon double bond, and at least one being terminated by a carboxyl radical and containing at least one other carboxyl radical i; Salts, anhydrides, esters, amides, imides, or nitriles thereof
  • C09J 11/08 - Macromolecular additives
  • C09J 167/00 - Adhesives based on polyesters obtained by reactions forming a carboxylic ester link in the main chain; Adhesives based on derivatives of such polymers
  • C09J 201/08 - Carboxyl groups

89.

AQUEOUS ADHESIVE FOR INORGANIC MATERIALS

      
Application Number JP2019016196
Publication Number 2019/203197
Status In Force
Filing Date 2019-04-15
Publication Date 2019-10-24
Owner
  • SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
  • MAG-ISOVER KABUSHIKI KAISHA (Japan)
Inventor
  • Hayashi, Miyuki
  • Kita, Ai
  • Tsukamoto, Masaya

Abstract

Provided is an aqueous adhesive that is for inorganic materials and that has excellent adhesion to inorganic materials. The present invention pertains to: an adhesiveness improver (J) that is for an aqueous inorganic material adhesive and that contains a copolymer (A) containing, as constituent monomers, an unsaturated (poly)carboxylic acid (anhydride) (a1) and an alkyl (meth)acrylate (alkyl having 2-30 carbon atoms) ester (a2); and an aqueous adhesive (X) that is for inorganic materials and that contains the adhesiveness improver (J), a sugar (B), a polycarboxylic acid (C) having 4-24 carbon atoms, and water.

IPC Classes  ?

  • C09J 133/06 - Homopolymers or copolymers of esters of esters containing only carbon, hydrogen and oxygen, the oxygen atom being present only as part of the carboxyl radical
  • C08F 220/06 - Acrylic acid; Methacrylic acid; Metal salts or ammonium salts thereof
  • C08F 220/10 - Esters
  • C08F 222/06 - Maleic anhydride
  • C09J 11/08 - Macromolecular additives
  • C09J 103/02 - Starch; Degradation products thereof, e.g. dextrin

90.

RESIN MODIFIER, RESIN COMPOSITION, MOLDING, AND MOLDED ARTICLE

      
Application Number JP2019001852
Publication Number 2019/146591
Status In Force
Filing Date 2019-01-22
Publication Date 2019-08-01
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Hasegawa, Shimpei
  • Tanaka, Yuhei

Abstract

babaa)] of the hydrophilic polymer (b) and the hydrophobic polymer (a) determined by reflective IR measurement when the block polymer (X) is heat-melted and pressed to a thickness of 500 µm.

IPC Classes  ?

  • C08G 81/02 - Macromolecular compounds obtained by interreacting polymers in the absence of monomers, e.g. block polymers at least one of the polymers being obtained by reactions involving only carbon-to-carbon unsaturated bonds
  • C08L 87/00 - Compositions of unspecified macromolecular compounds, obtained otherwise than by polymerisation reactions only involving unsaturated carbon-to-carbon bonds
  • C08L 101/00 - Compositions of unspecified macromolecular compounds

91.

STARTING MATERIAL FOR BULK DRUG OR ADDITIVES FOR DRUG, AND BULK DRUG OR DRUG USING SAME

      
Application Number JP2018047261
Publication Number 2019/131515
Status In Force
Filing Date 2018-12-21
Publication Date 2019-07-04
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Motofuji, Shihei
  • Nakai, Kenichiro
  • Michigami, Kyosuke
  • Matsumoto, Itsuka

Abstract

Provided are a starting material for a bulk drug and an additive for a drug, said starting material and additive achieving high formulation stability and excellent temporal stability of drug efficacy after being used for modifying a bulk drug, a polypeptide, a physiologically active protein, an enzyme, etc. The present invention pertains to a starting material for a bulk drug or an additive for a drug, said starting material or additive comprising a polyether composition (A) represented by general formula (1), wherein: composition (A) shows a single peak molecular weight distribution; the ratio (Mw/Mn) of the weight-average molecular weight (Mw) of composition (A) to the number-average molecular weight (Mn) thereof is 1.20 or less; and composition (A) contains 90 wt% or more, relative to the weight of composition (A), of a compound wherein m in general formula (1) is 1. In general formula (1): OR1, R2O, R3O and R4O independently represent an oxyalkylene group having 2-8 carbon atoms, provided that multiple OR1's, R2O's, R3O's and R4O's, if present, may be either the same or different and bonded together in either random or block manner; a, b, c and d independently represent an integer of 50-1200; X1to X4 independently represent a hydrogen atom, a substituent represented by general formula (2) or a substituent represented by general formula (3); and m is an integer of 1-10.

IPC Classes  ?

  • A61K 47/10 - Alcohols; Phenols; Salts thereof, e.g. glycerol; Polyethylene glycols [PEG]; Poloxamers; PEG/POE alkyl ethers
  • A61K 47/34 - Macromolecular compounds obtained otherwise than by reactions only involving carbon-to-carbon unsaturated bonds, e.g. polyesters, polyamino acids, polysiloxanes, polyphosphazines, copolymers of polyalkylene glycol or poloxamers
  • C08G 65/28 - Cyclic ethers and hydroxy compounds
  • C08G 65/332 - Polymers modified by chemical after-treatment with organic compounds containing oxygen containing carboxyl groups, or halides or esters thereof
  • C08G 65/333 - Polymers modified by chemical after-treatment with organic compounds containing nitrogen

92.

METHOD FOR PRODUCING RESIN PARTICLES AND TONER

      
Application Number JP2018041205
Publication Number 2019/107087
Status In Force
Filing Date 2018-11-06
Publication Date 2019-06-06
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Maeda, Shinichi
  • Ono, Yasuhiro
  • Tabatake, Yuta

Abstract

aa) of -20 to 57˚C and which is obtained by polycondensation of an alcohol component (y) and an unsaturated carboxylic acid component (z); and then aggregating and fusing the resin micro particles. The method for producing resin particles comprises a step of producing a modified resin by cross linking the carbon-carbon double bonds derived from the unsaturated carboxylic acid component (z) of the polyester resin (a) after the resin microparticles have been obtained.

IPC Classes  ?

  • C08F 283/01 - Macromolecular compounds obtained by polymerising monomers on to polymers provided for in subclass on to unsaturated polyesters
  • C08L 67/02 - Polyesters derived from dicarboxylic acids and dihydroxy compounds
  • G03G 9/08 - Developers with toner particles
  • G03G 9/087 - Binders for toner particles

93.

TONER BINDER AND TONER

      
Application Number JP2018041207
Publication Number 2019/107088
Status In Force
Filing Date 2018-11-06
Publication Date 2019-06-06
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Honda, Masaru
  • Kato, Tomohisa
  • Ono, Yasuhiro

Abstract

The present invention pertains to a toner binder containing a polyester resin (A) and a vinyl resin (B), wherein the polyester resin (A) has an acid value of at least 2 mgKOH/g, the vinyl resin (B) has a weight average molecular weight of 4,000-40,000, the vinyl resin (B) is a polymer having as an essential constituent monomer, a monomer (m) in which the SP value of a homopolymer of the monomer (m) is 11.5-16.5, the weight percentage of the monomer (m) among the monomers constituting the vinyl resin (B) is at least 1 wt% on the basis of the total weight of the monomers constituting (B), the weight ratio [(A)/(B)] of the polyester resin (A) to the vinyl resin (B) is 80/20-99.5/0.5, and when the vinyl resin (B) contains a polyethylene unit (C11) having a degree of polymerization of 70-120 and/or a polypropylene unit (C12) having a degree of polymerization of 70-210, the total weight percentage of the polyethylene unit (C11) and the polypropylene unit (C12) is 9 wt% or less on the basis of the weight of the vinyl resin (B).

IPC Classes  ?

94.

SURFACTANT AND DETERGENT CONTAINING SURFACTANT

      
Application Number JP2018041793
Publication Number 2019/107127
Status In Force
Filing Date 2018-11-12
Publication Date 2019-06-06
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Araki, Yusuke
  • Wakahara, Yoshiyuki

Abstract

This surfactant (a) having a critical micelle concentration (CMC) of 0.10 g/L or less, is represented by general formula (1). (1) R1-[-O-(A1nmm [in general formula (1), R1represents an m-valent hydrocarbon group having 7-20 carbon atoms; m represents an integer of 2-6; A1in m number of (A1nn each independently represent an alkylene group having 2-4 carbon atoms; m number of n are each independently an integer of 1-100; the sum of m number of n is 13 or more.]

IPC Classes  ?

  • C11D 1/722 - Ethers of polyoxyalkylenes having mixed oxyalkylene groups
  • B01F 17/42 - Ethers, e.g. polyglycol ethers of alcohols or phenols
  • C11D 1/72 - Ethers of polyoxyalkylene glycols

95.

ELECTROLYTIC SOLUTION FOR ELECTROLYTIC CAPACITOR, AND ELECTROLYTIC CAPACITOR

      
Application Number JP2018039392
Publication Number 2019/082904
Status In Force
Filing Date 2018-10-23
Publication Date 2019-05-02
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Tanabe Fumiyuki
  • Shiba Takahiro
  • Uchihashi Kengo

Abstract

The purpose of the present invention is provide an electrolytic solution which is for an electrolytic capacitor and which has superior voltage resistance, and a small decrease in electrical conductivity after a heat resistance test. This electrolytic solution for an electrolytic capacitor contains an electrolyte and a solvent, wherein the electrolyte contains an anion and a cation, the anion has a structure in which, from a copolymer having a carboxy group, at least one hydrogen ion of the carboxy group is removed, the copolymer having a carboxy group has a substituent having 5-20 carbon atoms which is linked to a carbon atom of the backbone of the copolymer, the copolymer having a carboxy group does not have a hydroxy group, and even if the copolymer having a carboxy group has a hydroxy group, the contained amount of monomers containing a hydroxy group of the structural monomers of the copolymer having a carboxy group is less than 60 wt% with respect to the weight of all monomers constituting the copolymer having a carboxy group, the copolymer satisfies condition 1, and the solvent contains ethylene glycol. (Condition 1) The electrical conductivity of an ethylene glycol solution containing 10 wt% of an ammonium salt between ammonia and the copolymer having a carboxy group is 0.2-3.0 mS/cm at 30°C.

IPC Classes  ?

  • H01G 9/035 - Liquid electrolytes, e.g. impregnating materials

96.

TONER BINDER AND TONER

      
Application Number JP2018033420
Publication Number 2019/073731
Status In Force
Filing Date 2018-09-10
Publication Date 2019-04-18
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Honda, Masaru
  • Odaka, Seiji
  • Kuroda, Daiki

Abstract

21-4021-40 (meth)acrylate including a chain hydrocarbon group and the weight proportion of the monomer (a) in the monomers constituting the vinyl resin (B) being 15-99 wt% based on the weight of the vinyl resin (B).

IPC Classes  ?

97.

DISPERSANT FOR CARBON MATERIAL, DISPERSION CONTAINING DISPERSANT FOR CARBON MATERIAL, ELECTRODE SLURRY FOR ALL-SOLID LITHIUM-ION SECONDARY BATTERY, MANUFACTURING METHOD FOR ELECTRODE FOR ALL-SOLID LITHIUM-ION SECONDARY BATTERY, ELECTRODE FOR ALL-SOLID LITHIUM-ION SECONDARY BATTERY, AND ALL-SOLID LITHIUM-ION SECONDARY BATTERY

      
Application Number JP2018031403
Publication Number 2019/044716
Status In Force
Filing Date 2018-08-24
Publication Date 2019-03-07
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Ishida, Tomonobu
  • Mori, Koichi
  • Yamamoto, Kohei

Abstract

The present invention pertains to a dispersant for a carbon material, the dispersant containing a copolymer having a nitrogen atom-containing group, wherein the nitrogen content in the copolymer is 0.01-5 wt%, and the copolymer has an SP value of 8.0-12 (cal/cm3)1/2.

IPC Classes  ?

  • H01M 4/62 - Selection of inactive substances as ingredients for active masses, e.g. binders, fillers
  • H01M 4/13 - Electrodes for accumulators with non-aqueous electrolyte, e.g. for lithium-accumulators; Processes of manufacture thereof
  • H01M 4/139 - Processes of manufacture
  • H01M 10/052 - Li-accumulators
  • H01M 10/0562 - Solid materials

98.

ELECTROLYTIC CAPACITOR ADDITIVE, CONDUCTIVE POLYMER DISPERSION, ELECTROLYTIC SOLUTION AND ELECTROLYTIC CAPACITOR

      
Application Number JP2018029129
Publication Number 2019/027019
Status In Force
Filing Date 2018-08-02
Publication Date 2019-02-07
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Akazawa Yoshihiko
  • Tanabe Fumiyuki
  • Uchihashi Kengo
  • Shiba Takahiro
  • Mukai Takao

Abstract

The present invention provides an electrolytic capacitor additive used in an electrolytic capacitor comprising a solid electrolyte layer, said additive containing a polymer (A) having a hydrophilic group, wherein the concentration of the hydrophilic group in the polymer (A) is 18 mmol/g or less based on the weight of the polymer (A), and the solubility parameter of the polymer (A) is 12 (cal/cm3)1/2 or more.

IPC Classes  ?

99.

SEALING AGENT FOR GENITALS

      
Application Number JP2018017127
Publication Number 2018/199276
Status In Force
Filing Date 2018-04-27
Publication Date 2018-11-01
Owner SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
Inventor
  • Kondo, Eiji
  • Maeda, Hiroaki
  • Kawabata, Shingo

Abstract

The purpose of the present invention is to provide a sealing agent for the cervical canal, which can be used for arresting the bleeding from the uterus or can be used as a sealing agent for a vaginal fluid, particularly can seal the cervical canal to prevent the outflow of amnion fluid, and can be removed without damaging genital tissues. The present invention relates to a sealing agent for genitals, of which a cured product (X) as mentioned below has a storage modulus G' of 200 to 2,000 kPa at 25°C. The cured product (X): a cured product produced by curing the sealing agent for genitals at a thickness of 120 to 150 μm.

IPC Classes  ?

  • A61L 31/06 - Macromolecular materials obtained otherwise than by reactions only involving carbon-to-carbon unsaturated bonds
  • A61L 31/14 - Materials characterised by their function or physical properties
  • C08G 18/10 - Prepolymer processes involving reaction of isocyanates or isothiocyanates with compounds having active hydrogen in a first reaction step
  • C08G 18/77 - Polyisocyanates or polyisothiocyanates having hetero atoms in addition to the isocyanate or isothiocyanate nitrogen and oxygen or sulfur

100.

METHOD FOR MANUFACTURING ELECTRODE ACTIVE MATERIAL MOLDING FOR LITHIUM-ION BATTERY AND METHOD FOR MANUFACTURING LITHIUM-ION BATTERY

      
Application Number JP2018016338
Publication Number 2018/194163
Status In Force
Filing Date 2018-04-20
Publication Date 2018-10-25
Owner
  • SANYO CHEMICAL INDUSTRIES, LTD. (Japan)
  • NISSAN MOTOR CO., LTD. (Japan)
Inventor
  • Suenaga, Takuya
  • Kawakita, Kenichi
  • Kusachi, Yuki
  • Ohsawa, Yasuhiko
  • Satou, Hajime
  • Akama, Hiroshi
  • Horie, Hideaki

Abstract

The present invention provides a method for manufacturing an electrode active material molding for a lithium-ion battery, the electrode active material molding being suitable for manufacturing a lithium-ion battery that enables suppression of the time, labor, facilities and so on related to manufacturing, and also provides a method for manufacturing a lithium-ion battery using the same. This method for manufacturing an electrode composition molding for a lithium-ion battery is characterized by comprising a molding step for molding a composition containing electrode active materials for a lithium-ion battery and an electrolyte to obtain an electrode active material molding for a lithium-ion battery, the molding being an unbound body of the electrode active materials for the lithium-ion battery, wherein the electrolyte content of the composition is 0.1-40 wt% using the weight of the composition as a reference.

IPC Classes  ?

  • H01M 4/139 - Processes of manufacture
  • H01M 4/36 - Selection of substances as active materials, active masses, active liquids
  • H01M 4/62 - Selection of inactive substances as ingredients for active masses, e.g. binders, fillers
  • H01M 10/052 - Li-accumulators
  • H01M 10/0566 - Liquid materials
  • H01M 10/0585 - Construction or manufacture of accumulators having only flat construction elements, i.e. flat positive electrodes, flat negative electrodes and flat separators
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