Patents by Inventor Dominik Bauer

Dominik Bauer 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).

  • Publication number: 20240123533
    Abstract: The present invention relates to a device and a method for DED or WAAM, comprising a welding torch configured to generate an arc for generating a melt pool on a surface of a workpiece, and a wire feeder configured to feed a wire towards the melt pool to generate a weld seam on said surface, and an enclosure enclosing at least part of the workpiece and comprising a process atmosphere with a process gas, wherein a sucking device sucks part of the process gas out of the enclosure and thereafter re-introduces the process gas into the process atmosphere, and wherein the enclosure comprises or consists of a flexible housing or a tent and in the sucking device is connected to a buffer volume or a pressure stabilizing unit.
    Type: Application
    Filed: February 21, 2022
    Publication date: April 18, 2024
    Inventors: Thomas AMMANN, Ian HIBBITT, Dominik BAUER, Julio COROADO
  • Patent number: 11846866
    Abstract: An apparatus for spectral broadening of laser pulses includes a main body, a plurality of mirror elements fastened to the main body, each having a mirror surface formed thereon and configured to reflect the laser pulses the plurality of mirror elements being fastened to a main body, and at least one nonlinear optical medium for the passage of the laser pulses for the generation of a nonlinear phase (?NL) by self-phase modulation. The at least one nonlinear optical medium may be a sheet-like and disk-shaped solid-state optical medium and/or a gaseous optical medium.
    Type: Grant
    Filed: October 14, 2022
    Date of Patent: December 19, 2023
    Assignee: TRUMPF LASER GMBH
    Inventors: Dominik Bauer, Jonathan Brons, Alexander Killi
  • Publication number: 20230170660
    Abstract: A laser system for nonlinear pulse compression includes a laser source configured to generate laser pulses with a pulse energy of at least 50 mJ, a spectral broadening device for spectrally broadening the high-energy laser pulses using self-phase modulation, and a compression device including a grating compressor having at least two diffraction gratings and configured to compress the spectrally broadened high-energy laser pulses. The laser system is configured to generate a pulse duration of the high-energy laser pulses of less than 100 fs.
    Type: Application
    Filed: January 31, 2023
    Publication date: June 1, 2023
    Inventors: Jonathan Brons, Raphael Scelle, Dominik Bauer, Aleksander Budnicki, Alexander Killi, Dirk Sutter, Peter Kroetz
  • Publication number: 20230038729
    Abstract: An apparatus for spectral broadening of laser pulses includes a main body, a plurality of mirror elements fastened to the main body, each having a mirror surface formed thereon and configured to reflect the laser pulses the plurality of mirror elements being fastened to a main body, and at least one nonlinear optical medium for the passage of the laser pulses for the generation of a nonlinear phase (?NL) by self-phase modulation. The at least one nonlinear optical medium may be a sheet-like and disk-shaped solid-state optical medium and/or a gaseous optical medium.
    Type: Application
    Filed: October 14, 2022
    Publication date: February 9, 2023
    Inventors: Dominik Bauer, Jonathan Brons, Alexander Killi
  • Patent number: 11573379
    Abstract: Methods, devices, and systems for welding optical fibers and perforated elements by pulsed laser beam are provided. In one aspect, a method includes focusing a pulsed laser beam onto a region of a joining surface formed by an outer circumference of an optical fiber and an inner circumference of a hole of a perforated element, a beam direction of the pulsed laser beam running in an axial direction of the joining surface, and moving a laser focus of the pulsed laser beam in the region axially in or counter to the beam direction to produce at least one weld seam in the region. The optical fiber and the perforated element are locally melted in the region by the pulsed laser beam focused into a material of the optical fiber and a material of the perforated element and are thereby welded to one another.
    Type: Grant
    Filed: May 25, 2021
    Date of Patent: February 7, 2023
    Assignee: TRUMPF LASER GMBH
    Inventors: Stefan Fuchs, Dominik Bauer, Michael Scharun, Helge Höck, Stefan Baumbach, Manuel Schindler, Maike Proßotowicz
  • Patent number: 11565321
    Abstract: A method and apparatus for the generative manufacture of a three-dimensional component in a processing chamber, in which the steps “providing a metallic starting material in the processing chamber” and “melting the starting material by means of energy input” are repeated multiple times, wherein a process gas is provided in the processing chamber are disclosed. The method is characterized by the steps: 1) the hydrogen content of the process gas or a sample of the process gas is determined; 2) the oxygen content of the process gas or a sample of the process gas is determined by means of an oxygen sensor and/or the dew point of the process gas or a sample of the process gas is determined; and 3) the values for the oxygen content and/or the dew point determined in step 2 are corrected by means of the value for the hydrogen content determined in step 1.
    Type: Grant
    Filed: November 2, 2017
    Date of Patent: January 31, 2023
    Assignee: Messer Industries USA, Inc.
    Inventors: Pierre Foret, Dominik Bauer, Eric Hultstein, Jürgen Scholz, Sören Wiberg
  • Publication number: 20220120993
    Abstract: A pulse compressor includes a plurality of optical components. The plurality of optical components includes a diffraction grating. A first optical component of the optical components is fastened to base plate by at least first and second intermediate elements that are laser-welded to one another. The first intermediate element is fastened to the base plate and the second intermediate element is fastened to the optical component. A joining surface of the first and second intermediate elements is formed as a bearing recess and another joining surface is curved. At least the laser-welded joining surfaces of the first optical component, the base plate, and the first and second intermediate elements are formed from materials for which a difference in their coefficients of thermal expansion is less than 10e-6/K.
    Type: Application
    Filed: December 28, 2021
    Publication date: April 21, 2022
    Inventors: Dominik Bauer, Aleksander Budnicki, Raphael Scelle, Michael Scharun
  • Patent number: 11271357
    Abstract: Disclosed are optical arrangements including: a disk-shaped laser-active medium, a deflecting device, having a plurality of mirror elements on which mirror faces for deflecting a laser beam are formed, and having a base body on which the mirror elements are fastened, the mirror faces of the mirror elements being oriented in such a way that the laser beam is deflected by a respective mirror face via the disk-shaped laser-active medium to another mirror face. The mirror elements are formed in one piece or are monolithically joined, and have a connecting section that is formed rotationally symmetrically with respect to a center axis and is rigidly connected by a material-fit connection or a direct connection to the base body.
    Type: Grant
    Filed: January 25, 2019
    Date of Patent: March 8, 2022
    Assignee: TRUMPF LASER GMBH
    Inventors: Dominik Bauer, Alexander Killi, Sven-Silvius Schad
  • Patent number: 11223180
    Abstract: Disclosed are optical arrangements including: a disk-shaped laser-active medium, a deflecting device, having a plurality of mirror elements on which mirror faces for deflecting a laser beam are formed, and having a base body on which the mirror elements are fastened, the mirror faces of the mirror elements being oriented in such a way that the laser beam is deflected by a respective mirror face via the disk-shaped laser-active medium to another mirror face. The mirror elements are formed in one piece or are monolithically joined, and have a connecting section that is formed rotationally symmetrically with respect to a center axis and is rigidly connected by a material-fit connection or a direct connection to the base body.
    Type: Grant
    Filed: January 25, 2019
    Date of Patent: January 11, 2022
    Assignee: TRUMPF LASER GMBH
    Inventors: Dominik Bauer, Alexander Killi, Sven-Silvius Schad
  • Publication number: 20220004670
    Abstract: A manipulation device includes an appendage extending from a base, the appendage comprising a flexible material having a resting pose and adapted to be deformed into a plurality of different poses, and at least one tendon attached to an end of the appendage and passing through the base or a portion of the appendage between the base and the distal end, such that actuation of the at least one tendon causes deformation of the appendage from the resting pose to a new pose. Systems and methods for fabricating and optimizing a manipulation device are also provided.
    Type: Application
    Filed: October 3, 2019
    Publication date: January 6, 2022
    Inventors: Jonathan King, Nancy S. Pollard, Stelian Coros, Kai-Hung Chang, Cornelia Ulrike Bauer, Dominik Bauer, Daniele Moro
  • Publication number: 20210276128
    Abstract: The present disclosure provides methods, devices, and systems for the butt welding of two, e.g., planar, workpieces composed of glass, e.g., quartz glass, by a pulsed laser beam, e.g., an ultrashort pulse (“USP”) laser beam, which is directed into the workpiece material parallel to the joining surface of the two workpieces and which is focused into the workpiece material in the region of the joining surface to locally melt the two workpieces in the region of their joining surface, wherein the laser focus of the laser beam focused into the workpiece material is moved in or counter to the beam direction of the laser beam to produce in the region of the joining surface a weld seam extending along the beam direction.
    Type: Application
    Filed: May 26, 2021
    Publication date: September 9, 2021
    Inventors: Dominik Bauer, Helge Höck, Michael Scharun, Manuel Schindler
  • Publication number: 20210278603
    Abstract: Methods, devices, and systems for welding optical fibers and perforated elements by pulsed laser beam are provided. In one aspect, a method includes focusing a pulsed laser beam onto a region of a joining surface formed by an outer circumference of an optical fiber and an inner circumference of a hole of a perforated element, a beam direction of the pulsed laser beam running in an axial direction of the joining surface, and moving a laser focus of the pulsed laser beam in the region axially in or counter to the beam direction to produce at least one weld seam in the region. The optical fiber and the perforated element are locally melted in the region by the pulsed laser beam focused into a material of the optical fiber and a material of the perforated element and are thereby welded to one another.
    Type: Application
    Filed: May 25, 2021
    Publication date: September 9, 2021
    Inventors: Stefan Fuchs, Dominik Bauer, Michael Scharun, Helge Höck, Stefan Baumbach, Manuel Schindler, Maike Proßotowicz
  • Patent number: 10821556
    Abstract: A method and apparatus for the generative production of a three-dimensional component in a processing chamber are disclosed. The method performs the steps of providing a metal starting material in the processing chamber and melting the starting material by inputting energy, which are repeated multiple times. A process gas is passed through the processing chamber in a circuit. Hydrogen is added to the circulating gas, then the circulating gas is heated to a temperature above 500 ° C. and then cooled to a temperature below 60 ° C.
    Type: Grant
    Filed: November 2, 2017
    Date of Patent: November 3, 2020
    Assignee: LINDE AKTIENGESELLSCHAFT
    Inventors: Pierre Foret, Dominik Bauer, Eric Hultstein
  • Publication number: 20190173257
    Abstract: Disclosed are optical arrangements including: a disk-shaped laser-active medium, a deflecting device, having a plurality of mirror elements on which mirror faces for deflecting a laser beam are formed, and having a base body on which the mirror elements are fastened, the mirror faces of the mirror elements being oriented in such a way that the laser beam is deflected by a respective mirror face via the disk-shaped laser-active medium to another mirror face. The mirror elements are formed in one piece or are monolithically joined, and have a connecting section that is formed rotationally symmetrically with respect to a center axis and is rigidly connected by a material-fit connection or a direct connection to the base body.
    Type: Application
    Filed: January 25, 2019
    Publication date: June 6, 2019
    Inventors: Dominik Bauer, Alexander Killi, Sven-Silvius Schad
  • Publication number: 20180117713
    Abstract: A method and apparatus for the generative production of a three-dimensional component in a processing chamber are disclosed. The method performs the steps of providing a metal starting material in the processing chamber and melting the starting material by inputting energy, which are repeated multiple times. A process gas is passed through the processing chamber in a circuit. Hydrogen is added to the circulating gas, then the circulating gas is heated to a temperature above 500 ° C. and then cooled to a temperature below 60 ° C.
    Type: Application
    Filed: November 2, 2017
    Publication date: May 3, 2018
    Inventors: Pierre Foret, Dominik Bauer, Eric Hultstein
  • Publication number: 20180117675
    Abstract: A method and apparatus for the generative manufacture of a three-dimensional component in a processing chamber, in which the steps “providing a metallic starting material in the processing chamber” and “melting the starting material by means of energy input” are repeated multiple times, wherein a process gas is provided in the processing chamber are disclosed. The method is characterized by the steps: 1) the hydrogen content of the process gas or a sample of the process gas is determined; 2) the oxygen content of the process gas or a sample of the process gas is determined by means of an oxygen sensor and/or the dew point of the process gas or a sample of the process gas is determined; and 3) the values for the oxygen content and/or the dew point determined in step 2 are corrected by means of the value for the hydrogen content determined in step 1.
    Type: Application
    Filed: November 2, 2017
    Publication date: May 3, 2018
    Inventors: Pierre Foret, Dominik Bauer, Eric Hultstein, Jürgen Scholz, Sören Wiberg