Patents by Inventor Lorenz HERRMANN
Lorenz HERRMANN has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 12119170Abstract: The present disclosure provides a method for producing a magnetic powder and the use of a waste magnetic material for producing isotropic or anisotropic magnets. The method including providing a waste magnetic material including a waste magnetic chemical composition, analyzing the waste magnetic material to obtain information about the waste magnetic chemical composition thereof, adjusting the waste magnetic chemical composition to a target magnetic chemical composition to obtain an adjusted waste magnetic material, and atomizing the adjusted waste magnetic material to obtain the magnetic powder.Type: GrantFiled: December 18, 2020Date of Patent: October 15, 2024Assignee: ABB SCHWEIZ AGInventors: Reinhard Simon, Jacim Jacimovic, Lorenz Herrmann, Felix Greuter, Elio Perigo
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Patent number: 11830645Abstract: A manufacturing method of a sintered magnet is described. The method includes forming a pre-sintering body from a first magnetic powder and a second magnetic powder (containing a heavy rare earth element, HRE) so that at least part of the second magnetic powder is provided at at least one inner portion of the pre-sintering body and surrounded format least two opposite sides by the first magnetic powder; sintering the pre-sintering body; and annealing the sintered pre-sintering body at an annealing temperature lower than the sintering temperature, thereby causing inter-grain diffusion of HRE from the HRE reservoir zone to the grain boundary phase. After the annealing, the grain boundary phase contains the HRE in a higher concentration than the main phase.Type: GrantFiled: January 2, 2020Date of Patent: November 28, 2023Assignee: ABB Schweiz AGInventors: Reinhard A. Simon, Jacim Jacimovic, Lorenz Herrmann, Tomaz Tomse
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Patent number: 11398346Abstract: A method for manufacturing a multicomponent permanent magnet, and a multicomponent permanent magnet are proposed. The multicomponent permanent magnet has a first permanent magnet having a R-T-B-composition, wherein R is at least one selected from the group consisting of Y, Ce, La, Pr, Nd, Sm, Eu and Gd and T is one or more transition metal elements including Fe; and a second permanent magnet having a R-T-B-composition, wherein R is at least one selected from the group consisting of Y, Ce, La, Pr, Nd, Sm, Eu and Gd and T is one or more transition metal elements including Fe, the second magnet including at least one of a heavy rare earth element (HRE) and an increased amount of Ce and/or Co, the second magnet having different magnetic properties, in particular a higher coercivity, than the first magnet. The first magnet and the second magnet are connected mechanically, wherein the connection is electrically conductive with an adjusted electrical resistivity.Type: GrantFiled: June 17, 2020Date of Patent: July 26, 2022Assignee: ABB SCHWEIZ AGInventors: Lavinia Scherf, Jacim Jacimovic, Darren Tremelling, Lorenz Herrmann, Thomas Christen, Jari Jappinen, Taina Suontausta
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Publication number: 20220172889Abstract: A method of producing a permanent magnet includes forming a magnetisable workpiece by additive manufacturing and forming the permanent magnet by partitioning the magnetisable workpiece. The additive manufacturing includes steps of forming a first powder layer by depositing a first powder, the first powder being ferromagnetic; forming a first workpiece layer of the magnetisable workpiece by irradiating a predetermined first area of the first powder layer by means of a focused energy beam to fuse the first powder in the first area; and repeating the above steps multiple times to form further workpiece layers of the magnetisable workpiece. The permanent magnet is formed by partitioning the magnetisable workpiece, where an exposed surface of the permanent magnet formed by the partitioning is non-parallel to the first workpiece layer, and where the permanent magnet produces an external magnetic field having a magnetic field strength of at least 1 kA/m.Type: ApplicationFiled: February 21, 2020Publication date: June 2, 2022Applicant: ABB Schweiz AGInventors: Jacim Jacimovic, Thomas Christen, Lavinia Scherf, Reto Kessler, Lorenz Herrmann, Eric Denervaud
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Patent number: 11315711Abstract: A sintered magnet, the sintered magnet including a core portion, a shell portion arranged at an outer part of the sintered magnet, and a diffusion portion arranged at least partially between the core portion and the shell portion. The shell portion has a coercivity, which is at least 30 kA/m larger than the coercivity of the core portion. In the diffusion portion, the coercivity is not less than the coercivity of the core portion and not larger than the coercivity of the shell portion and the value of the coercivity gradually increases from the core portion towards the shell portion. The thickness of the core portion is not less than 1 mm and the total thickness of the shell portion and the diffusion portion is at least 5 mm.Type: GrantFiled: June 24, 2019Date of Patent: April 26, 2022Assignee: ABB Schweiz AGInventors: Elio Perigo, Darren Tremelling, Jacim Jacimovic, Nikolaus Zant, Reinhard Simon, Lorenz Herrmann, Felix Greuter
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Publication number: 20210316365Abstract: The present disclosure provides a method for producing a magnetic powder and the use of a waste magnetic material for producing isotropic or anisotropic magnets. The method comprises providing a waste magnetic material comprising a waste magnetic chemical composition, analyzing the waste magnetic material to obtain information about the waste magnetic chemical composition thereof, adjusting the waste magnetic chemical composition to a target magnetic chemical composition to obtain an adjusted waste magnetic material, and atomizing the adjusted waste magnetic material to obtain the magnetic powder.Type: ApplicationFiled: December 18, 2020Publication date: October 14, 2021Inventors: Reinhard Simon, Jacim Jacimovic, Lorenz Herrmann, Felix Greuter, Elio Perigo
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Patent number: 11004641Abstract: An electrical switch assembly includes a contact element to be moved towards a further contact element for generating an electrical connection; and a drive for moving the contact element; wherein the drive includes a plunger with a connection member interconnected with the contact element; wherein the plunger includes a mechanical structure with a top side to which the connection member is connection, and a bottom side opposite to the top side; wherein the drive includes a Thomas coil for moving the plunger via an electrically conducting top face, which is provided on the top side and an electrically conducting bottom face, which is provided on the bottom side. The mechanical structure includes at least one channel between the top side and the bottom side, the at least one channel extending transverse to a movement direction of the plunger. Furthermore, the mechanical structure fills less than 50% of a volume between the top side and the bottom side.Type: GrantFiled: May 6, 2019Date of Patent: May 11, 2021Assignee: ABB Schweiz AGInventors: Francisco Garcia-Ferre, Thomas Schmoelzer, Jacim Jacimovic, Lorenz Herrmann, Jakub Korbel, Tobias Erford, David Saxl
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Publication number: 20200312548Abstract: A method for manufacturing a multicomponent permanent magnet, and a multicomponent permanent magnet are proposed. The multicomponent permanent magnet has a first permanent magnet having a R-T-B-composition, wherein R is at least one selected from the group consisting of Y, Ce, La, Pr, Nd, Sm, Eu and Gd and T is one or more transition metal elements including Fe; and a second permanent magnet having a R-T-B-composition, wherein R is at least one selected from the group consisting of Y, Ce, La, Pr, Nd, Sm, Eu and Gd and T is one or more transition metal elements including Fe, the second magnet including at least one of a heavy rare earth element (HRE) and an increased amount of Ce and/or Co, the second magnet having different magnetic properties, in particular a higher coercivity, than the first magnet. The first magnet and the second magnet are connected mechanically, wherein the connection is electrically conductive with an adjusted electrical resistivity.Type: ApplicationFiled: June 17, 2020Publication date: October 1, 2020Inventors: Lavinia Scherf, Jacim Jaci movie, Darren Tremelling, Lorenz Herrmann, Thomas Christen, Jari Jappinen, Taina Suontausta
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Publication number: 20200143963Abstract: A manufacturing method of a sintered magnet is described. The method includes forming a pre-sintering body from a first magnetic powder and a second magnetic powder (containing a heavy rare earth element, HRE) so that at least part of the second magnetic powder is provided at at least one inner portion of the pre-sintering body and surrounded format least two opposite sides by the first magnetic powder; sintering the pre-sintering body; and annealing the sintered pre-sintering body at an annealing temperature lower than the sintering temperature, thereby causing inter-grain diffusion of HRE from the HRE reservoir zone to the grain boundary phase. After the annealing, the grain boundary phase contains the HRE in a higher concentration than the main phase.Type: ApplicationFiled: January 2, 2020Publication date: May 7, 2020Inventors: Reinhard A. Simon, Jacim Jacimovic, Lorenz Herrmann, Tomaz Tomse
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Publication number: 20190348242Abstract: An electrical switch assembly includes a contact element to be moved towards a further contact element for generating an electrical connection; and a drive for moving the contact element; wherein the drive includes a plunger with a connection member interconnected with the contact element; wherein the plunger includes a mechanical structure with a top side to which the connection member is connection, and a bottom side opposite to the top side; wherein the drive includes a Thomas coil for moving the plunger via an electrically conducting top face, which is provided on the top side and an electrically conducting bottom face, which is provided on the bottom side. The mechanical structure includes at least one channel between the top side and the bottom side, the at least one channel extending transverse to a movement direction of the plunger. Furthermore, the mechanical structure fills less than 50% of a volume between the top side and the bottom side.Type: ApplicationFiled: May 6, 2019Publication date: November 14, 2019Inventors: Francisco Garcia-Ferre, Thomas Schmoelzer, Jacim Jacimovic, Lorenz Herrmann, Jakub Korbel, Tobias Erford, David Saxl
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Publication number: 20190311827Abstract: A sintered magnet, the sintered magnet including a core portion, a shell portion arranged at an outer part of the sintered magnet, and a diffusion portion arranged at least partially between the core portion and the shell portion. The shell portion has a coercivity, which is at least 30 kA/m larger than the coercivity of the core portion. In the diffusion portion, the coercivity is not less than the coercivity of the core portion and not larger than the coercivity of the shell portion and the value of the coercivity gradually increases from the core portion towards the shell portion. The thickness of the core portion is not less than 1 mm and the total thickness of the shell portion and the diffusion portion is at least 5 mm.Type: ApplicationFiled: June 24, 2019Publication date: October 10, 2019Inventors: Elio Perigo, Darren Tremelling, Jacim Jacimovic, Nikolaus Zant, Reinhand Simon, Lorenz Herrmann, Felix Greuter
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Publication number: 20150357804Abstract: A tubular electrical insulation device for a cable is arranged for receiving a plurality of electrical conductors segments by insertion. The insulation device is flexible and includes an inner circumferential electrically conductive layer for establishing an electric contact to the electrical conductors once inserted into the tubular electrical insulation device. A high voltage power cable arrangement includes a plurality of elongated electrical conductor segments arranged to be placed alongside one another and in electrical contact to one another to form an inner electrical conductor of a high voltage power cable, and an elongated tubular electrical insulation device arranged to house and surround the inner electrical conductor. A method for providing a flexible insulated high voltage power cable includes the step of assembling a plurality of elongated electrical conductor segments and an electrical insulation device on site to form the cable.Type: ApplicationFiled: February 7, 2014Publication date: December 10, 2015Applicant: ABB TECHNOLOGY LTDInventors: Nikolaus ZANT, Jens ROCKS, Chau-Hon HO, Alexandre OUDALOV, Robin GREMAUD, Xavier KORNMANN, Patrik KAUFMANN, Lorenz HERRMANN, Emmanuel LOGAKIS, Marco SCHNEIDER