Patents by Inventor Eugene Shcherbakov
Eugene Shcherbakov 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: 11612955Abstract: A joining device and method for laser-based joining of two components includes a first laser radiation source, a first radiation guide connected to the first radiation source to couple first laser radiation into the first radiation guide, a second laser radiation source, at least one second radiation guide connected to the second radiation source to couple second laser radiation into the second radiation guide, and a focusing device coupled to the laser radiations and focusing them at a distance from each other into a joining zone of the components. To reduce installation effort, the focusing device focuses the first and second laser radiations through a common beam path and a coupling device is connected on its input side to the first and second radiation guides and on its output side to the focusing device. The coupling device couples the first and second laser radiations into the common beam path.Type: GrantFiled: December 14, 2020Date of Patent: March 28, 2023Assignees: Volkswagen Aktiengesellschaft, IPG Laser GmbHInventors: Thorge Hammer, Wilfried Reimann, Eugene Shcherbakov
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Publication number: 20210094119Abstract: A joining device and method for laser-based joining of two components includes a first laser radiation source, a first radiation guide connected to the first radiation source to couple first laser radiation into the first radiation guide, a second laser radiation source, at least one second radiation guide connected to the second radiation source to couple second laser radiation into the second radiation guide, and a focusing device coupled to the laser radiations and focusing them at a distance from each other into a joining zone of the components. To reduce installation effort, the focusing device focuses the first and second laser radiations through a common beam path and a coupling device is connected on its input side to the first and second radiation guides and on its output side to the focusing device. The coupling device couples the first and second laser radiations into the common beam path.Type: ApplicationFiled: December 14, 2020Publication date: April 1, 2021Applicant: IPG Laser GmbHInventors: Thorge Hammer, Wilfried Reimann, Eugene Shcherbakov
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Patent number: 10894300Abstract: A joining device and method for laser-based joining of two components includes a first laser radiation source, a first radiation guide connected to the first radiation source to couple first laser radiation into the first radiation guide, a second laser radiation source, at least one second radiation guide connected to the second radiation source to couple second laser radiation into the second radiation guide, and a focusing device coupled to the laser radiations and focusing them at a distance from each other into a joining zone of the components. To reduce installation effort, the focusing device focuses the first and second laser radiations through a common beam path and a coupling device is connected on its input side to the first and second radiation guides and on its output side to the focusing device. The coupling device couples the first and second laser radiations into the common beam path.Type: GrantFiled: October 23, 2017Date of Patent: January 19, 2021Assignees: IPG Laser GmbH, Volkswagen AktiengeselschaftInventors: Thorge Hammer, Wilfried Reimann, Eugene Shcherbakov
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Patent number: 10759000Abstract: The present invention provides a fiber laser system that delivers from a single processing cable a multibeam output. The present invention allows for controlling multiple fiber laser modules and delivering their respective outputs in a pre-determined sequence but in a single processing cable, thereby providing multiple processing steps on a work piece that heretofore required separate optics for each beam. Custom fiber laser systems that combine processing steps tailored for a specific industrial application such as pre-heating, cutting, cleaning, welding, brazing, ablating, annealing, cooling, polishing and the like can be readily provided because of the present invention.Type: GrantFiled: February 7, 2017Date of Patent: September 1, 2020Assignee: IPG PHOTONICS CORPORATIONInventors: Andrey Abramov, Valentin Fomin, Eugene Shcherbakov, Holger Mamerow, Dmitri Yagodkin
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Patent number: 10293432Abstract: A hand displaceable laser welding gun is configured with an elongated support column extending along a longitudinal axis and made from lightweight material. A support plate is displaceably mounted to the column while supporting thereon an optical head axially which is provided with optics. The optics is configured to direct a laser beam along a path towards a welding zone through a protective window of the optical head. The laser welding gun further is structured with a first arm mounted to the support plate and extending along a longitudinal axis of the gun diametrically opposite to the optical head. The inner surface of the displaceable arm has an inner surface defining a tunnel which is aligned with the optical head and axially traversed by the laser beam, a first axially flowing stream of pressurized gaseous medium, and a second axially flowing stream of gaseous medium.Type: GrantFiled: October 21, 2013Date of Patent: May 21, 2019Assignee: IPG PHOTONICS CORPORATIONInventors: Valentin Fomin, Anton Starovoytov, Andrey Abramov, Valentin Gapontsev, Artjom Fuchs, Ingo Schramm, Eugene Shcherbakov, Holger Mamerow, Andreas Michalzik
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Publication number: 20190118297Abstract: The present invention provides a fiber laser system that delivers from a single processing cable a multibeam output. The present invention allows for controlling multiple fiber laser modules and delivering their respective outputs in a pre-determined sequence but in a single processing cable, thereby providing multiple processing steps on a work piece that heretofore required separate optics for each beam. Custom fiber laser systems that combine processing steps tailored for a specific industrial application such as pre-heating, cutting, cleaning, welding, brazing, ablating, annealing, cooling, polishing and the like can be readily provided because of the present invention.Type: ApplicationFiled: February 7, 2017Publication date: April 25, 2019Inventors: Andrey ABRAMOV, Valentin FOMIN, Eugene SHCHERBAKOV, Holger MAMEROV, Dmitri YAGODKIN
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Publication number: 20180065207Abstract: A joining device and method for laser-based joining of two components includes a first laser radiation source, a first radiation guide connected to the first radiation source to couple first laser radiation into the first radiation guide, a second laser radiation source, at least one second radiation guide connected to the second radiation source to couple second laser radiation into the second radiation guide, and a focusing device coupled to the laser radiations and focusing them at a distance from each other into a joining zone of the components. To reduce installation effort, the focusing device focuses the first and second laser radiations through a common beam path and a coupling device is connected on its input side to the first and second radiation guides and on its output side to the focusing device. The coupling device couples the first and second laser radiations into the common beam path.Type: ApplicationFiled: October 23, 2017Publication date: March 8, 2018Applicants: Volkswagen Aktiengellschaft, IPG Laser GmbHInventors: Thorge Hammer, Wilfried Reimann, Eugene Shcherbakov
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Publication number: 20150266130Abstract: A hand displaceable laser welding gun is configured with an elongated support column extending along a longitudinal axis and made from lightweight material. A support plate is displaceably mounted to the column while supporting thereon an optical head axially which is provided with optics. The optics is configured to direct a laser beam along a path towards a welding zone through a protective window of the optical head. The laser welding gun further is structured with a first arm mounted to the support plate and extending along a longitudinal axis of the gun diametrically opposite to the optical head. The inner surface of the displaceable arm has an inner surface defining a tunnel which is aligned with the optical head and axially traversed by the laser beam, a first axially flowing stream of pressurized gaseous medium, and a second axially flowing stream of gaseous medium.Type: ApplicationFiled: October 21, 2013Publication date: September 24, 2015Inventors: Valentin Fomin, Anton Starovoytov, Andrey Abramov, Valentin Gapontsev, Artjom Fuchs, Ingo Schramm, Eugene Shcherbakov, Holger Mamerow, Andreas Michalzik
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Patent number: 7912099Abstract: A powerful fiber laser system is configured with at least one filtering element capable of preventing a backreflected Raman component of the main signal from propagating along the upstream stretch of the system. The filtering element includes a slanted fiber grating, one or more cladding formations disposed in a cladding of fiber and having a refractive index greater than that one of the cladding, but lower than a refractive index of the core, and/or a combination of two spaced apart single mode fibers and a low mode fiber spliced to the opposing ends of the respective SM fibers.Type: GrantFiled: October 21, 2008Date of Patent: March 22, 2011Inventors: Valentin P. Gapontsev, Eugene Shcherbakov, Valentin Fomin
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Publication number: 20100098112Abstract: A powerful fiber laser system is configured with at least one filtering element capable of preventing a backreflected Raman component of the main signal from propagating along the upstream stretch of the system. The filtering element includes a slanted fiber grating, one or more cladding formations disposed in a cladding of fiber and having a refractive index greater than that one of the cladding, but lower than a refractive index of the core, and/or a combination of two spaced apart single mode fibers and a low mode fiber spliced to the opposing ends of the respective SM fibers.Type: ApplicationFiled: October 21, 2008Publication date: April 22, 2010Inventors: Valentin P. Gapontsev, Eugene Shcherbakov, Valentin Fomin