Laempe Mössner Sinto GmbH

Germany

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2023 3
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IPC Class
B33Y 10/00 - Processes of additive manufacturing 8
B29C 64/153 - Processes of additive manufacturing using only solid materials using layers of powder being selectively joined, e.g. by selective laser sintering or melting 7
B33Y 30/00 - ADDITIVE MANUFACTURING, i.e. MANUFACTURING OF THREE-DIMENSIONAL [3D] OBJECTS BY ADDITIVE DEPOSITION, ADDITIVE AGGLOMERATION OR ADDITIVE LAYERING, e.g. BY 3D PRINTING, STEREOLITHOGRAPHY OR SELECTIVE LASER SINTERING - Details thereof or accessories therefor 6
B29C 64/393 - Data acquisition or data processing for additive manufacturing for controlling or regulating additive manufacturing processes 5
B33Y 50/02 - Data acquisition or data processing for additive manufacturing for controlling or regulating additive manufacturing processes 5
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NICE Class
07 - Machines and machine tools 7
09 - Scientific and electric apparatus and instruments 6
37 - Construction and mining; installation and repair services 5
40 - Treatment of materials; recycling, air and water treatment, 4
42 - Scientific, technological and industrial services, research and design 4
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1.

METHOD FOR PRODUCING A 3D STRUCTURE IN A 3D PRINTING METHOD

      
Application Number DE2023000023
Publication Number 2023/198235
Status In Force
Filing Date 2023-04-04
Publication Date 2023-10-19
Owner LAEMPE MÖSSNER SINTO GMBH (Germany)
Inventor
  • Wedemeyer, Frank
  • Wintgens, Rudolf
  • Heinrich, Florian

Abstract

The aim of the invention, which relates to a method for producing a 3D structure in a 3D printing method, is that of specifying a solution by means of which an automated correction of the 3D printing data used for the 3D printing method for the 3D structure (30) to be generated is carried out when deviations occur during the manufacturing of the 3D structures (31). This aim is achieved in that: the 3D printing data are data of a target geometry (30) of the 3D structure; the generated 3D structure (31) is three-dimensionally measured after the 3D structure (31) is generated, wherein three-dimensional de facto incomplete data of an actual geometry (31) of the 3D structure are generated which are reproduced in a model (34) that comprises one or more unscanned regions (35); first deviations between points P (37) on a surface of the target geometry of the 3D structure and associated points P' (36) on the surface of the actual geometry (31) of the 3D structure are determined in the scanned regions; further deviations (29) in the unscanned regions (35) of the surface of the generated 3D structure (31) are determined; and corrected 3D printing data (38) are generated by means of these determined first and further deviations (28, 29).

IPC Classes  ?

  • B29C 64/386 - Data acquisition or data processing for additive manufacturing
  • B22F 10/80 - Data acquisition or data processing
  • B33Y 50/00 - Data acquisition or data processing for additive manufacturing
  • G06F 119/18 - Manufacturability analysis or optimisation for manufacturability
  • G06F 113/10 - Additive manufacturing, e.g. 3D printing

2.

ASSEMBLY AND METHOD FOR APPLYING PARTICULATE BUILDING MATERIAL IN A 3D PRINTER

      
Application Number DE2023000016
Publication Number 2023/174467
Status In Force
Filing Date 2023-03-11
Publication Date 2023-09-21
Owner LAEMPE MÖSSNER SINTO GMBH (Germany)
Inventor
  • Wedemeyer, Frank
  • Wintgens, Rudolf
  • Mössner, Andreas

Abstract

The invention relates to an assembly and a method for applying particulate building material (2) in a 3D printer, with the objective of reducing forces acting on already applied layers of the particulate building material (2) and partially already hardened regions of the particulate building material (2) with the application of a further layer of the particulate building material (2). This objective is achieved by the assembly in that, in front of the smoothing means (9), when viewed in a moving direction (4) of the smoothing means (9), there is a means for discharging excess particulate building material (2) from an accumulation (10) in front of the smoothing means (9). The objective is achieved by the method in that, in a working step of smoothing the particulate building material (2) applied to a surface of the building field (3) by an applicator (1), with said building material collecting in an accumulation (10) in front of a smoothing means (9), the height H (13) of the accumulation (10) is controlled such that particulate building material (2) is partially removed from the accumulation (10).

IPC Classes  ?

  • B29C 64/153 - Processes of additive manufacturing using only solid materials using layers of powder being selectively joined, e.g. by selective laser sintering or melting
  • B22F 10/28 - Powder bed fusion, e.g. selective laser melting [SLM] or electron beam melting [EBM]
  • B22F 10/70 - Recycling
  • B22F 12/67 - Blades
  • B29C 64/214 - Doctor blades
  • B29C 64/357 - Recycling
  • B33Y 10/00 - Processes of additive manufacturing
  • B33Y 30/00 - ADDITIVE MANUFACTURING, i.e. MANUFACTURING OF THREE-DIMENSIONAL [3D] OBJECTS BY ADDITIVE DEPOSITION, ADDITIVE AGGLOMERATION OR ADDITIVE LAYERING, e.g. BY 3D PRINTING, STEREOLITHOGRAPHY OR SELECTIVE LASER SINTERING - Details thereof or accessories therefor

3.

METHOD FOR INFLUENCING COMPONENTS OR ASSEMBLIES IN A 3D PRINTER

      
Application Number DE2022000088
Publication Number 2023/016594
Status In Force
Filing Date 2022-08-03
Publication Date 2023-02-16
Owner LAEMPE MÖSSNER SINTO GMBH (Germany)
Inventor
  • Wedemeyer, Frank
  • Wintgens, Rudolf

Abstract

The invention relates to a method for influencing components or assemblies in a 3D printer (1). The aim of the invention is to provide a solution with which an automatic adjustment or a modified actuation of components or assemblies in a 3D printer (1) is achieved. This is achieved in that control data (8) with parameters, by means of which the production of a 3D structure (10) in a 3D printer (1) is controlled, is generated from input data (9) in a processing step (15), and the 3D structure (10) is produced such that a produced 3D structure (10) is measured, wherein the actual measurements are ascertained and stored as data, a comparison is carried out between the specified input data (9) measurements and the data of the actual measurements, and differences are ascertained. In the event that such a difference is ascertained or such a difference exceeds a specified tolerance threshold, at least one parameter of the control data (8) is modified.

IPC Classes  ?

  • B29C 64/165 - Processes of additive manufacturing using a combination of solid and fluid materials, e.g. a powder selectively bound by a liquid binder, catalyst, inhibitor or energy absorber
  • B29C 64/393 - Data acquisition or data processing for additive manufacturing for controlling or regulating additive manufacturing processes
  • B22F 10/14 - Formation of a green body by jetting of binder onto a bed of metal powder
  • B22F 10/85 - Data acquisition or data processing for controlling or regulating additive manufacturing processes
  • B22F 12/90 - Means for process control, e.g. cameras or sensors
  • B33Y 10/00 - Processes of additive manufacturing
  • B33Y 50/02 - Data acquisition or data processing for additive manufacturing for controlling or regulating additive manufacturing processes

4.

METHOD FOR DISCHARGING PARTICULATE BUILDING MATERIAL IN A 3D PRINTER

      
Application Number DE2022000029
Publication Number 2022/199735
Status In Force
Filing Date 2022-03-22
Publication Date 2022-09-29
Owner LAEMPE MÖSSNER SINTO GMBH (Germany)
Inventor
  • Münzer, Janosch
  • Wedemeyer, Frank
  • Wintgens, Rudolf

Abstract

The invention relates to a method for discharging particulate building material in a 3D printer, in which method: the building material curtain (6) consisting of particulate building material (2) is optically monitored in a working step in which the particulate building material (2) is discharged in a region of the building material curtain (6) between the applicator (1) and the construction area (4); an image of the building material curtain (6) is generated and/or at least one dimension of the building material curtain (6) is determined; the image and/or the at least one dimension is compared with an associated reference image and/or a predefined reference value and, if the image deviates from the reference image and/or the dimension deviates from the associated reference value, at least one discharge parameter for discharging the particulate building material (2) is changed.

IPC Classes  ?

  • B29C 64/153 - Processes of additive manufacturing using only solid materials using layers of powder being selectively joined, e.g. by selective laser sintering or melting
  • B22F 10/28 - Powder bed fusion, e.g. selective laser melting [SLM] or electron beam melting [EBM]
  • B22F 10/85 - Data acquisition or data processing for controlling or regulating additive manufacturing processes
  • B22F 12/52 - Hoppers
  • B22F 12/90 - Means for process control, e.g. cameras or sensors
  • B29C 64/165 - Processes of additive manufacturing using a combination of solid and fluid materials, e.g. a powder selectively bound by a liquid binder, catalyst, inhibitor or energy absorber
  • B29C 64/329 - Feeding using hoppers
  • B29C 64/393 - Data acquisition or data processing for additive manufacturing for controlling or regulating additive manufacturing processes
  • B33Y 10/00 - Processes of additive manufacturing
  • B33Y 30/00 - ADDITIVE MANUFACTURING, i.e. MANUFACTURING OF THREE-DIMENSIONAL [3D] OBJECTS BY ADDITIVE DEPOSITION, ADDITIVE AGGLOMERATION OR ADDITIVE LAYERING, e.g. BY 3D PRINTING, STEREOLITHOGRAPHY OR SELECTIVE LASER SINTERING - Details thereof or accessories therefor
  • B33Y 50/02 - Data acquisition or data processing for additive manufacturing for controlling or regulating additive manufacturing processes
  • B22F 10/14 - Formation of a green body by jetting of binder onto a bed of metal powder
  • B22F 10/37 - Process control of powder bed aspects, e.g. density

5.

METHOD FOR APPLYING PARTICULATE BUILDING MATERIAL IN A 3D PRINTER

      
Application Number DE2021000184
Publication Number 2022/100773
Status In Force
Filing Date 2021-11-05
Publication Date 2022-05-19
Owner LAEMPE MÖSSNER SINTO GMBH (Germany)
Inventor
  • Wedemeyer, Frank
  • Wintgens, Rudolf
  • Münzer, Janosch

Abstract

The invention, which concerns a method for applying particulate building material (3) in a 3D printer, addresses the problem of providing a solution that permits a more uniform application of the particulate building material (3). This problem is solved by optically monitoring the discharged particulate building material (3) by means of an image-recording device (7) in a working step of smoothing the particulate building material (3) in a region of an accumulation (5) of the particulate building material (3); generating an image of the accumulation (5) and determining at least one dimension of the accumulation (5) from the generated image; comparing the image of the accumulation (5) and/or the at least one determined dimension with an associated reference image and/or a predetermined reference value; and changing at least one application parameter for applying the particulate building material (3) if the image of the accumulation (5) deviates from the reference image and/or if the determined dimension deviates from the associated reference value.

IPC Classes  ?

  • B29C 64/153 - Processes of additive manufacturing using only solid materials using layers of powder being selectively joined, e.g. by selective laser sintering or melting
  • B29C 64/214 - Doctor blades
  • B29C 64/255 - Enclosures for the building material, e.g. powder containers
  • B29C 64/329 - Feeding using hoppers
  • B29C 64/343 - Metering
  • B29C 64/393 - Data acquisition or data processing for additive manufacturing for controlling or regulating additive manufacturing processes
  • B33Y 10/00 - Processes of additive manufacturing
  • B33Y 30/00 - ADDITIVE MANUFACTURING, i.e. MANUFACTURING OF THREE-DIMENSIONAL [3D] OBJECTS BY ADDITIVE DEPOSITION, ADDITIVE AGGLOMERATION OR ADDITIVE LAYERING, e.g. BY 3D PRINTING, STEREOLITHOGRAPHY OR SELECTIVE LASER SINTERING - Details thereof or accessories therefor
  • B33Y 50/02 - Data acquisition or data processing for additive manufacturing for controlling or regulating additive manufacturing processes
  • B22F 12/90 - Means for process control, e.g. cameras or sensors
  • B22F 10/37 - Process control of powder bed aspects, e.g. density

6.

METHOD FOR MONITORING A SURFACE PROFILE IN A 3D PRINTER

      
Application Number DE2021000119
Publication Number 2022/022762
Status In Force
Filing Date 2021-07-17
Publication Date 2022-02-03
Owner LAEMPE MÖSSNER SINTO GMBH (Germany)
Inventor
  • Gaer, Ivan
  • Wedemeyer, Frank
  • Wintgens, Rudolf

Abstract

The invention, which relates to a method for monitoring a surface profile in a 3D printer, addresses the problem of specifying a solution with which the surface profile of a layer of a particulate construction material on a construction area or of 3D part-structures within a layer of a particulate construction material on the construction area can be sensed simply, rapidly and safely to monitor the quality of the production of a 3D structure, in which method the technical complexity and costs are reduced. This problem is solved in that an optical analysis of the generated image of the surface profile (1) is carried out, and during this analysis it is determined whether 3D part-structures and/or a structure of the particulate construction material (2) applied layer by layer have been produced correctly or incorrectly.

IPC Classes  ?

  • B22F 3/105 - Sintering only by using electric current, laser radiation or plasma
  • B22F 10/28 - Powder bed fusion, e.g. selective laser melting [SLM] or electron beam melting [EBM]
  • B22F 10/80 - Data acquisition or data processing
  • B22F 10/85 - Data acquisition or data processing for controlling or regulating additive manufacturing processes
  • B22F 12/90 - Means for process control, e.g. cameras or sensors
  • B29C 64/153 - Processes of additive manufacturing using only solid materials using layers of powder being selectively joined, e.g. by selective laser sintering or melting
  • B29C 64/386 - Data acquisition or data processing for additive manufacturing
  • B29C 64/393 - Data acquisition or data processing for additive manufacturing for controlling or regulating additive manufacturing processes
  • B33Y 10/00 - Processes of additive manufacturing
  • B33Y 50/02 - Data acquisition or data processing for additive manufacturing for controlling or regulating additive manufacturing processes

7.

METHOD FOR CREATING A 3D STRUCTURE, WHEREIN THE SPEED OF MOVEMENT OF WORKING MEANS, IN PARTICULAR OF A SCRAPER, IS REDUCED IN CRITICAL REGIONS

      
Application Number DE2021000108
Publication Number 2021/249588
Status In Force
Filing Date 2021-06-09
Publication Date 2021-12-16
Owner LAEMPE MÖSSNER SINTO GMBH (Germany)
Inventor
  • Wedemeyer, Frank
  • Wintgens, Rudolf

Abstract

The invention, which relates to a method for creating a 3D structure, addresses the problem of specifying a solution with which the layers are built up more reliably and more exactly in a 3D printing method. This object is achieved in that the data of the 3D structure to be created are analysed, during which critical regions within the 3D structure to be created are identified, and in that, if an identified critical region is reached during the creation of the 3D structure, a speed of movement of working means of the 3D printer over the construction area is at least temporarily reduced.

IPC Classes  ?

  • B22F 10/14 - Formation of a green body by jetting of binder onto a bed of metal powder
  • B22F 10/28 - Powder bed fusion, e.g. selective laser melting [SLM] or electron beam melting [EBM]
  • B22F 10/37 - Process control of powder bed aspects, e.g. density
  • B29C 64/153 - Processes of additive manufacturing using only solid materials using layers of powder being selectively joined, e.g. by selective laser sintering or melting
  • B29C 64/393 - Data acquisition or data processing for additive manufacturing for controlling or regulating additive manufacturing processes
  • B33Y 50/02 - Data acquisition or data processing for additive manufacturing for controlling or regulating additive manufacturing processes

8.

hottinger

      
Application Number 018523310
Status Registered
Filing Date 2021-07-28
Registration Date 2021-12-10
Owner Laempe Mössner Sinto GmbH (Germany)
NICE Classes  ?
  • 07 - Machines and machine tools
  • 09 - Scientific and electric apparatus and instruments
  • 37 - Construction and mining; installation and repair services

Goods & Services

Machines and machine tools for treatment of materials and for manufacturing, Namely foundry machines, Core shooters, mixing machines, in particular for producing core sand, sand mixers, gassing units for foundry machines and core shooters, and casting machines, and components for the aforesaid machines, including in the form of replacement parts; Fittings and replacement parts for machines and machine tools for treatment of materials and for manufacturing, namely fittings and replacement parts for foundry machines, mixing machines, in particular for producing core sand, sand mixers, gassing units for foundry machines, core shooters, and casting machines, in particular worktables, gassing units, mixing blades, and electric, mechanical and hydraulic control equipment, included in class 7; Fittings and replacement parts for machines and machine tools for treatment of materials and for manufacturing, namely fittings and replacement parts for core shooters, in particular clamping and separating devices, machine slides, core ejectors, roller tables, cleaning equipment, automatic tool changers, suction and rinsing devices, height-adjustable core box heaters, and electric, mechanical and hydraulic control equipment, included in class 7; Handling machines, mechanical handling apparatus and robots for automating foundry machines and foundry installations, and fittings and replacement parts for the aforesaid goods, included in class 7; 3D printers for producing sand cores; 3D printers for manufacturing individual parts for foundry machines, core shooters, mixing machines, in particular for producing core sand or sand mixers. Electrical controls, Electronic controllers, in relation to the following fields: Tool separating stations; Software for recording and analysing operating data for the purpose of controlling industrial processes; Software for recording, analysing and controlling industrial processes; Downloadable software applications for use with three dimensional printers; Downloadable computer software for designing and modelling of three dimensional printable products, All the aforesaid goods Solely in connection with foundries, foundry installations and foundry machines. Construction, assembly, conversion, retrofitting, installation, repair and maintenance in relation to foundry installations and machines, core shooters, mixing machines, in particular for producing core sand, sand mixers, gassing units for foundry machines and core shooters, casting machines, and handling machines, mechanical handling apparatus and robots for automating casting machines and casting installations; fix, Maintenance, In relation to the following goods: 3D printers for use in foundries; Maintenance, fix, In relation to the following goods: Core making machines, core shooting apparatus and manipulating devices for the foundry industry; Maintenance, fix, In relation to the following goods: Drying ovens for use in foundries and foundry installations; Maintenance, fix, In relation to the following goods: Foundry products and, in particular, Castings of grey cast iron, ductile cast iron, cast steel and non-ferrous metal castings; Maintenance, fix, In relation to the following goods: Core and moulding machines; Installation of foundry products.

9.

METERING UNIT IN A PRINTHEAD OF A 3D PRINTER AND METHOD FOR METERING A FLUID IN A 3D PRINTER

      
Application Number DE2020000290
Publication Number 2021/104554
Status In Force
Filing Date 2020-11-25
Publication Date 2021-06-03
Owner LAEMPE MÖSSNER SINTO GMBH (Germany)
Inventor
  • Gaer, Ivan
  • Münzer, Janosch
  • Wedemeyer, Frank
  • Wintgens, Rudolf

Abstract

The invention relates to a metering unit (1) in a printhead of a 3D printer and to a method for metering a fluid (5) in a 3D printer. The problem addressed by the invention is that of providing a solution by means of which improved quality and reliability are achieved in the metering of a fluid (5) by means of a metering unit (1). Said problem is solved with respect to the assembly in that a removal channel (8) for removing the fluid (5) from the metering unit (1) in the printhead of the 3D printer is arranged at the metering unit (1) such that the fluid (5) flows through the metering unit (1) and through a fluid exit region (10) outside the nozzle (3). Said problem is solved with respect to the method in that the fluid (5) fed into the metering unit (1) of the 3D printer by means of the feed channel (4) is at least partially led out of the metering unit (1) by means of a removal channel (8), the fluid (5) flowing through the metering unit (1) and through a fluid exit region (10) outside the nozzle (3).

IPC Classes  ?

  • B29C 64/165 - Processes of additive manufacturing using a combination of solid and fluid materials, e.g. a powder selectively bound by a liquid binder, catalyst, inhibitor or energy absorber
  • B29C 64/209 - Heads; Nozzles
  • B33Y 10/00 - Processes of additive manufacturing
  • B33Y 30/00 - ADDITIVE MANUFACTURING, i.e. MANUFACTURING OF THREE-DIMENSIONAL [3D] OBJECTS BY ADDITIVE DEPOSITION, ADDITIVE AGGLOMERATION OR ADDITIVE LAYERING, e.g. BY 3D PRINTING, STEREOLITHOGRAPHY OR SELECTIVE LASER SINTERING - Details thereof or accessories therefor
  • B22F 10/14 - Formation of a green body by jetting of binder onto a bed of metal powder
  • B22F 12/53 - Nozzles
  • B41J 2/18 - Ink recirculation systems

10.

ARRANGEMENT AND METHOD FOR GENERATING A LAYER OF A PARTICULATE BUILDING MATERIAL IN A 3D PRINTER

      
Application Number DE2020000254
Publication Number 2021/078316
Status In Force
Filing Date 2020-10-23
Publication Date 2021-04-29
Owner LAEMPE MÖSSNER SINTO GMBH (Germany)
Inventor
  • Gaer, Ivan
  • Münzer, Janosch
  • Wedemeyer, Frank
  • Wintgens, Rudolf

Abstract

The invention, which concerns an arrangement and a method for generating a layer of a particulate building material in a 3D printer, is based on the problem of providing a solution whereby an increase in the quantity of the material deposited, with the same quality being maintained, and a reduction in the forces acting on the building zone are achieved while the particulate building material is being applied, smoothed and compacted. This problem is solved with respect to the arrangement by having in the arrangement (1) that can be moved over a building zone (5) a first assembly (4a), which has a means (2) for applying the particulate building material (10) onto a building zone (5), and a second assembly (4b), which is arranged spatially at a distance from the first assembly (4a) in the arrangement (1) and has a means (3) for smoothing the particulate building material (10) applied. This problem is solved with respect to the method by providing that, in a first method step, by means of a coater arrangement (1), which is provided over a building zone (5) and can be moved over this building zone (5), the particulate building material (10) is applied on the building zone (5) and that, in a second method step, which follows at a time after the first method step and is independent thereof, a smoothing of the particulate building material (10) applied is performed, wherein the first and second method steps are carried out during a process of moving the coater arrangement (1) over the building zone (5).

IPC Classes  ?

  • B22F 3/105 - Sintering only by using electric current, laser radiation or plasma
  • B29C 64/153 - Processes of additive manufacturing using only solid materials using layers of powder being selectively joined, e.g. by selective laser sintering or melting
  • B33Y 10/00 - Processes of additive manufacturing
  • B33Y 30/00 - ADDITIVE MANUFACTURING, i.e. MANUFACTURING OF THREE-DIMENSIONAL [3D] OBJECTS BY ADDITIVE DEPOSITION, ADDITIVE AGGLOMERATION OR ADDITIVE LAYERING, e.g. BY 3D PRINTING, STEREOLITHOGRAPHY OR SELECTIVE LASER SINTERING - Details thereof or accessories therefor
  • B33Y 40/00 - Auxiliary operations or equipment, e.g. for material handling

11.

ASSEMBLY AND METHOD FOR CREATING A 3D STRUCTURE

      
Application Number DE2018000238
Publication Number 2019/034192
Status In Force
Filing Date 2018-08-14
Publication Date 2019-02-21
Owner LAEMPE MÖSSNER SINTO GMBH (Germany)
Inventor
  • Wedemeyer, Frank
  • Wintgens, Rudolf

Abstract

The invention relates to an assembly and a method for creating a 3D structure, wherein the object of the invention is to provide a solution for an improved compression of a particulate construction material to be applied in layers, as well as for increased speed in the forming of the individual layers. With the assembly, this object is achieved in that a compressor element (2) having a blade with a least one cutting edge is arranged in the compressor assembly (1) for compressing the particulate construction material to be applied in layers, and in that the width of the cutting edge at one end of the cutting edge, which is in contact with particles (11) of a particulate construction material during a compression process, is in a range between 0.1 and 3 times the diameter of a particle of the particulate construction material. With the method, the object is achieved in that the compression of the construction material occurs by means of a compressor element (2) having a blade with a least one cutting edge and arranged in a compressor assembly (1), wherein the width of said cutting edge at one end of the cutting edge, which is in contact with particles (11) of a particulate construction material during a compression process, is in a range between 0.1 and 3 times the diameter of a particle of the particulate material, wherein the compressor element (2) is moved in a linear movement direction (12) by means of a drive element (3).

IPC Classes  ?

  • B29C 64/214 - Doctor blades
  • B33Y 10/00 - Processes of additive manufacturing
  • B33Y 30/00 - ADDITIVE MANUFACTURING, i.e. MANUFACTURING OF THREE-DIMENSIONAL [3D] OBJECTS BY ADDITIVE DEPOSITION, ADDITIVE AGGLOMERATION OR ADDITIVE LAYERING, e.g. BY 3D PRINTING, STEREOLITHOGRAPHY OR SELECTIVE LASER SINTERING - Details thereof or accessories therefor
  • B33Y 40/00 - Auxiliary operations or equipment, e.g. for material handling
  • B29C 64/153 - Processes of additive manufacturing using only solid materials using layers of powder being selectively joined, e.g. by selective laser sintering or melting
  • B29C 64/188 - Processes of additive manufacturing involving additional operations performed on the added layers, e.g. smoothing, grinding or thickness control
  • B29C 64/205 - Means for applying layers

12.

L

      
Application Number 1445555
Status Registered
Filing Date 2018-09-21
Registration Date 2018-09-21
Owner Laempe Mössner Sinto GmbH (Germany)
NICE Classes  ?
  • 07 - Machines and machine tools
  • 09 - Scientific and electric apparatus and instruments
  • 37 - Construction and mining; installation and repair services
  • 40 - Treatment of materials; recycling, air and water treatment,
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

Machines and machine tools for treatment of materials and for manufacturing, in particular foundry machines, core shooters, mixing machines, in particular for producing core sand, sand mixers, gassing units for foundry machines and core shooters, and casting machines, and components for the aforesaid machines, including in the form of replacement parts; fittings and replacement parts for machines and machine tools for treatment of materials and for manufacturing, namely fittings and replacement parts for core shooters, in particular clamping and separating devices, machine slides, core ejectors, roller tables, cleaning equipment, automatic tool changers, suction and rinsing devices, height-adjustable core box heaters, and electric, mechanical and hydraulic control equipment, included in this class; fittings and replacement parts for machines and machine tools for treatment of materials and for manufacturing, namely fittings and replacement parts for foundry machines, mixing machines, in particular for producing core sand, sand mixers, gassing units for foundry machines, core shooters, and casting machines, in particular worktables, gassing units, mixing blades, and electric, mechanical and hydraulic control equipment, included in this class; handling machines, mechanical handling apparatus and robots for automating foundry machines and foundry installations, and fittings and replacement parts for the aforesaid goods, included in this class; 3D printers for producing sand cores; 3D printers for manufacturing individual parts for foundry machines, core shooters, mixing machines, in particular for producing core sand or sand mixer. Software for recording and analysing operating data for the purpose of controlling industrial processes; software for recording, analysing and controlling industrial processes; downloadable software applications for use with three dimensional printers; downloadable computer software for designing and modelling of three dimensional printable products. Construction, assembly relating to the installation, conversion, retrofitting, installation, repair and maintenance in relation to foundry installations and machines, core shooters, mixing machines, in particular for producing core sand, sand mixers, gassing units for foundry machines and core shooters, casting machines, and handling machines, mechanical handling apparatus and robots for automating casting machines and casting installations; repair and maintenance of 3D printers. 3D printing; 3D reproduction services; custom manufacture and 3D reproduction services; rental of 3D printers. Engineering services, technological consultancy, technical planning, custom design services, construction planning and initial commissioning [testing and inspection] in relation to foundry installations and machines, core shooters, mixing machines, in particular for producing core sand, sand mixers, gassing units for foundry machines and core shooters, casting machines, and handling machines, mechanical handling apparatus and robots for automating casting machines and casting installations; design and development of software for foundry installations and machines, core shooters, mixing machines, in particular for producing core sand, sand mixers, gassing units for foundry machines and core shooters, casting machines, and handling machines, mechanical handling apparatus and robots for automating casting machines and casting installations; design and development of software for use with 3D printers; design and development of software for designing and modelling 3D printed matter; design and development of software for recording and analysing operating data for the purpose of controlling industrial processes; design and development of software for recording, analysing and controlling industrial processes.

13.

LAEMPE

      
Application Number 1443749
Status Registered
Filing Date 2018-09-21
Registration Date 2018-09-21
Owner Laempe Mössner Sinto GmbH (Germany)
NICE Classes  ?
  • 07 - Machines and machine tools
  • 09 - Scientific and electric apparatus and instruments
  • 37 - Construction and mining; installation and repair services
  • 40 - Treatment of materials; recycling, air and water treatment,
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

Machines and machine tools for treatment of materials and for manufacturing, in particular foundry machines, core shooters, mixing machines, in particular for producing core sand, sand mixers, gassing units for foundry machines and core shooters, and casting machines, and components for the aforesaid machines, including in the form of replacement parts; fittings and replacement parts for machines and machine tools for treatment of materials and for manufacturing, namely fittings and replacement parts for core shooters, in particular clamping and separating devices, machine slides, core ejectors, roller tables, cleaning equipment, automatic tool changers, suction and rinsing devices, height-adjustable core box heaters, and electric, mechanical and hydraulic control equipment, included in this class; fittings and replacement parts for machines and machine tools for treatment of materials and for manufacturing, namely fittings and replacement parts for foundry machines, mixing machines, in particular for producing core sand, sand mixers, gassing units for foundry machines, core shooters, and casting machines, in particular worktables, gassing units, mixing blades, and electric, mechanical and hydraulic control equipment, included in this class; handling machines, mechanical handling apparatus and robots for automating foundry machines and foundry installations, and fittings and replacement parts for the aforesaid goods, included in this class; 3D printers for producing sand cores; 3D printers for manufacturing individual parts for foundry machines, core shooters, mixing machines, in particular for producing core sand or sand mixers. Software for recording and analysing operating data for the purpose of controlling industrial processes; software for recording, analysing and controlling industrial processes; downloadable software applications for use with three dimensional printers; downloadable computer software for designing and modelling of three dimensional printable products. Construction, assembly relating to the installation, conversion, retrofitting, installation, repair and maintenance in relation to foundry installations and machines, core shooters, mixing machines, in particular for producing core sand, sand mixers, gassing units for foundry machines and core shooters, casting machines, and handling machines, mechanical handling apparatus and robots for automating casting machines and casting installations; repair and maintenance of 3D printers. 3D printing; 3D reproduction services; custom manufacture and 3D reproduction services; rental of 3D printers. Engineering services, technological consultancy, technical planning, custom design services, construction planning and initial commissioning [testing and inspection] in relation to foundry installations and machines, core shooters, mixing machines, in particular for producing core sand, sand mixers, gassing units for foundry machines and core shooters, casting machines, and handling machines, mechanical handling apparatus and robots for automating casting machines and casting installations; design and development of software for foundry installations and machines, core shooters, mixing machines, in particular for producing core sand, sand mixers, gassing units for foundry machines and core shooters, casting machines, and handling machines, mechanical handling apparatus and robots for automating casting machines and casting installations; design and development of software for use with 3D printers; design and development of software for designing and modelling 3D printed matter; design and development of software for recording and analysing operating data for the purpose of controlling industrial processes; design and development of software for recording, analysing and controlling industrial processes.

14.

Miscellaneous Design

      
Application Number 017892114
Status Registered
Filing Date 2018-04-25
Registration Date 2018-09-04
Owner Laempe Mössner Sinto GmbH (Germany)
NICE Classes  ?
  • 07 - Machines and machine tools
  • 09 - Scientific and electric apparatus and instruments
  • 37 - Construction and mining; installation and repair services
  • 40 - Treatment of materials; recycling, air and water treatment,
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

Machines and machine tools for treatment of materials and for manufacturing, In particular foundry machines, Core shooters, mixing machines, in particular for producing core sand, sand mixers, gassing units for foundry machines and core shooters, and casting machines, and components for the aforesaid machines, including in the form of replacement parts; Fittings and replacement parts for machines and machine tools for treatment of materials and for manufacturing, namely fittings and replacement parts for core shooters, in particular clamping and separating devices, machine slides, core ejectors, roller tables, cleaning equipment, automatic tool changers, suction and rinsing devices, height-adjustable core box heaters, and electric, mechanical and hydraulic control equipment, included in class 7; Fittings and replacement parts for machines and machine tools for treatment of materials and for manufacturing, namely fittings and replacement parts for foundry machines, mixing machines, in particular for producing core sand, sand mixers, gassing units for foundry machines, core shooters, and casting machines, in particular worktables, gassing units, mixing blades, and electric, mechanical and hydraulic control equipment, included in class 7; Handling machines, mechanical handling apparatus and robots for automating foundry machines and foundry installations, and fittings and replacement parts for the aforesaid goods, included in class 7; 3D printers for producing sand cores; 3D printers for manufacturing individual parts for foundry machines, core shooters, mixing machines, in particular for producing core sand or sand mixer. Software for recording and analysing operating data for the purpose of controlling industrial processes; Software for recording, analysing and controlling industrial processes; Downloadable software applications for use with three dimensional printers; Downloadable computer software for designing and modelling of three dimensional printable products. Construction, assembly, conversion, retrofitting, installation, repair and maintenance in relation to foundry installations and machines, core shooters, mixing machines, in particular for producing core sand, sand mixers, gassing units for foundry machines and core shooters, casting machines, and handling machines, mechanical handling apparatus and robots for automating casting machines and casting installations; Repair and maintenance of 3D printers. 3D printing; 3 D reproduction services; Custom manufacture and 3 D reproduction services; Rental of 3D printers. Engineering services, Technological consultancy, Technical planning, Custom design services, Construction and initial commissioning in relation to foundry installations and machines, core shooters, Mixing machines, In particular for producing core sand, sand mixers, gassing units for foundry machines and core shooters, casting machines, and handling machines, mechanical handling apparatus and robots for automating casting machines and casting installations; Design and development of software for foundry installations and machines, core shooters, mixing machines, in particular for producing core sand, sand mixers, gassing units for foundry machines and core shooters, casting machines, and handling machines, mechanical handling apparatus and robots for automating casting machines and casting installations; Design and development of software for use with 3D printers; Design and development of software for designing and modelling 3D printed matter; Design and development of software for recording and analysing operating data for the purpose of controlling industrial processes; Design and development of software for recording, analysing and controlling industrial processe.

15.

LAEMPE

      
Application Number 017892113
Status Registered
Filing Date 2018-04-25
Registration Date 2018-09-04
Owner Laempe Mössner Sinto GmbH (Germany)
NICE Classes  ?
  • 07 - Machines and machine tools
  • 09 - Scientific and electric apparatus and instruments
  • 37 - Construction and mining; installation and repair services
  • 40 - Treatment of materials; recycling, air and water treatment,
  • 42 - Scientific, technological and industrial services, research and design

Goods & Services

Machines and machine tools for treatment of materials and for manufacturing, In particular foundry machines, Core shooters, mixing machines, in particular for producing core sand, sand mixers, gassing units for foundry machines and core shooters, and casting machines, and components for the aforesaid machines, including in the form of replacement parts; Fittings and replacement parts for machines and machine tools for treatment of materials and for manufacturing, namely fittings and replacement parts for core shooters, in particular clamping and separating devices, machine slides, core ejectors, roller tables, cleaning equipment, automatic tool changers, suction and rinsing devices, height-adjustable core box heaters, and electric, mechanical and hydraulic control equipment, included in class 7; Fittings and replacement parts for machines and machine tools for treatment of materials and for manufacturing, namely fittings and replacement parts for foundry machines, mixing machines, in particular for producing core sand, sand mixers, gassing units for foundry machines, core shooters, and casting machines, in particular worktables, gassing units, mixing blades, and electric, mechanical and hydraulic control equipment, included in class 7; Handling machines, mechanical handling apparatus and robots for automating foundry machines and foundry installations, and fittings and replacement parts for the aforesaid goods, included in class 7; 3D printers for producing sand cores; 3D printers for manufacturing individual parts for foundry machines, core shooters, mixing machines, in particular for producing core sand or sand mixers. Software for recording and analysing operating data for the purpose of controlling industrial processes; Software for recording, analysing and controlling industrial processes; Downloadable software applications for use with three dimensional printers; Downloadable computer software for designing and modelling of three dimensional printable products. Construction, assembly, conversion, retrofitting, installation, repair and maintenance in relation to foundry installations and machines, core shooters, mixing machines, in particular for producing core sand, sand mixers, gassing units for foundry machines and core shooters, casting machines, and handling machines, mechanical handling apparatus and robots for automating casting machines and casting installations; Repair and maintenance of 3D printers. 3D printing; 3 D reproduction services; Custom manufacture and 3 D reproduction services; Rental of 3D printers. Engineering services, Technological consultancy, Technical planning, Custom design services, Construction and initial commissioning in relation to foundry installations and machines, core shooters, Mixing machines, In particular for producing core sand, sand mixers, gassing units for foundry machines and core shooters, casting machines, and handling machines, mechanical handling apparatus and robots for automating casting machines and casting installations; Design and development of software for foundry installations and machines, core shooters, mixing machines, in particular for producing core sand, sand mixers, gassing units for foundry machines and core shooters, casting machines, and handling machines, mechanical handling apparatus and robots for automating casting machines and casting installations; Design and development of software for use with 3D printers; Design and development of software for designing and modelling 3D printed matter; Design and development of software for recording and analysing operating data for the purpose of controlling industrial processes; Design and development of software for recording, analysing and controlling industrial processes.

16.

LAEMPE FORMING FUTURE

      
Application Number 1083065
Status Registered
Filing Date 2011-02-08
Registration Date 2011-02-08
Owner Laempe Mössner Sinto GmbH (Germany)
NICE Classes  ? 07 - Machines and machine tools

Goods & Services

Foundry machines, in particular core shooting machines on the basis of the shooting and blowing technique, low-pressure casting machines, sand mixers, post-cast machining machines; handling machines and mechanical handling apparatus and also robots for automation for foundry machines and for foundry plants and also individual parts and spare parts for the aforementioned goods.

17.

hottinger

      
Application Number 000613422
Status Registered
Filing Date 1997-08-27
Registration Date 2000-03-16
Owner Laempe Mössner Sinto GmbH (Germany)
NICE Classes  ?
  • 06 - Common metals and ores; objects made of metal
  • 07 - Machines and machine tools
  • 09 - Scientific and electric apparatus and instruments

Goods & Services

Foundry products, namely foundry-castings using various manufacturing processes (greensand, carbon dioxide, cold box, diecasting, spin casting) and made from various materials (grey cast iron, nodular iron, cast steel, non-ferrous metals). Foundry machines, in particular for making casting moulds and cores and core stacking, in particular foundry machines, namely automatic single station core and shell manufacturing machines using shooting and blasting technology, two and three-station installations for the automatic manufacture of shells/cores, mainly consisting of shooting stations, tool selection stations with the corresponding tool transport devices, single and multi-station core and shell manufacturing machines and shell manufacturing machines using vibration technology, special purpose machines for foundry practice; mechanically-operated handling apparatus and manipulators for the automation of core and shell manufacture with electric or electronic controls, automatic core moulders and shell moulders, including tested, run-in and production-ready tools. Electric or electronic control mechanisms for tool selection stations.