Patents by Inventor Thomas ROSSMEIER

Thomas ROSSMEIER 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).

  • Patent number: 11897806
    Abstract: An improved method and an improved apparatus are provided for producing a thin glass ribbon, which provide borders at the edges of the ribbon. The edges formed are of high mechanical quality and a formation of new secondary borders after the severing or at least the thickness of such secondary borders is reduced compared to the original borders. The method includes drawing the thin glass ribbon from a molten glass or from a preform, severing the borders, and cooling the resulting glass ribbon. The severing is effected at a location along the moving direction of the thin glass ribbon and at a time at which during the cooling of the thin glass ribbon the viscosity of the glass is in a range from 107 dPa·s to 1011 dPa·s, so that the edges of the thin glass ribbon newly produced by the severing of the borders are rounded off.
    Type: Grant
    Filed: February 18, 2020
    Date of Patent: February 13, 2024
    Assignee: SCHOTT AG
    Inventors: Andreas Habeck, Thomas Rossmeier, Jürgen Vogt, Ulrich Lange, Stephan Zachmann, Thomas Wiegel
  • Publication number: 20220194843
    Abstract: A method for producing long-term bendable glass material includes: bending a glass material in a bending radius in a range of 1 mm to 107 mm; storing the bent glass material for a time period of at least 1 day; inspecting at least a portion of the bent glass material for damage after the storing; and classifying the inspected bent glass material as a reject if damage is detected or as a long-term bendable glass material if no damage is detected.
    Type: Application
    Filed: March 9, 2022
    Publication date: June 23, 2022
    Applicant: Schott AG
    Inventors: Clemens Ottermann, Kurt Nattermann, Markus Heiß-Chouquet, Jürgen Vogt, Thomas Roßmeier, Andreas Habeck
  • Patent number: 11312649
    Abstract: A method for producing thing glass strips is provided that avoids camber defects. The method includes using a glass strip forming device that has a drawing device; drawing, using the drawing device, the thin glass strip away from the glass strip forming device; measuring, using a measuring device, variables that are dependent on a differing length of edges of the thin glass strip at at least two measurement locations spaced apart transversely to a longitudinal extension of the thin glass strip; determining a difference or a quotient of the variables. The difference or the quotient is used to determine a control variable by which the glass strip forming device is controlled so as to counteract a difference in velocities of the thin glass strip between the two opposite edges.
    Type: Grant
    Filed: September 13, 2016
    Date of Patent: April 26, 2022
    Assignee: SCHOTT AG
    Inventors: Andreas Ortner, Thomas Rossmeier, Jürgen Vogt, Marius Necel
  • Patent number: 11181453
    Abstract: A method for testing the strength of a sheet-like element having two opposite faces and made of hard brittle material under tensile stress is provided. The method includes passing each of the faces of the element over a roller and thereby bending the element so that each of the faces is subjected to a first tensile stress in a portion in which the opposite face is in contact with a surface of the roller; exerting a second tensile force on the element in the direction of advancement so that both faces are subjected to the second tensile stress of at least 2 MPa so that the first and second tensile stresses add up to define a resultant tensile stress; and monitoring the element and determining whether the element has a defined breaking strength equal to the resultant tensile stress or whether the element breaks under the resultant tensile stress.
    Type: Grant
    Filed: January 13, 2020
    Date of Patent: November 23, 2021
    Assignee: SCHOTT AG
    Inventors: Martin Lotze, Thomas Roßmeier, Clemens Ottermann, Volker Seibert
  • Patent number: 11155496
    Abstract: A method and an apparatus for stabilizing the position of a sheet-like element made of hard brittle material during transportation thereof along a transport path is provided in which the element is guided through a roller chicane having three rollers.
    Type: Grant
    Filed: September 9, 2016
    Date of Patent: October 26, 2021
    Assignee: SCHOTT AG
    Inventors: Martin Lotze, Thomas Roßmeier, Clemens Ottermann, Volker Seibert
  • Publication number: 20200223734
    Abstract: An improved method and an improved apparatus are provided for producing a thin glass ribbon, which provide borders at the edges of the ribbon. The edges formed are of high mechanical quality and a formation of new secondary borders after the severing or at least the thickness of such secondary borders is reduced compared to the original borders. The method includes drawing the thin glass ribbon from a molten glass or from a preform, severing the borders, and cooling the resulting glass ribbon. The severing is effected at a location along the moving direction of the thin glass ribbon and at a time at which during the cooling of the thin glass ribbon the viscosity of the glass is in a range from 107 dPa·s to 1011 dPa·s, so that the edges of the thin glass ribbon newly produced by the severing of the borders are rounded off.
    Type: Application
    Filed: February 18, 2020
    Publication date: July 16, 2020
    Applicant: SCHOTT AG
    Inventors: Andreas HABECK, Thomas ROSSMEIER, Jürgen VOGT, Ulrich LANGE, Stephan ZACHMANN, Thomas WIEGEL
  • Publication number: 20200150012
    Abstract: A method for testing the strength of a sheet-like element having two opposite faces and made of hard brittle material under tensile stress is provided. The method includes passing each of the faces of the element over a roller and thereby bending the element so that each of the faces is subjected to a first tensile stress in a portion in which the opposite face is in contact with a surface of the roller; exerting a second tensile force on the element in the direction of advancement so that both faces are subjected to the second tensile stress of at least 2 MPa so that the first and second tensile stresses add up to define a resultant tensile stress; and monitoring the element and determining whether the element has a defined breaking strength equal to the resultant tensile stress or whether the element breaks under the resultant tensile stress.
    Type: Application
    Filed: January 13, 2020
    Publication date: May 14, 2020
    Applicant: SCHOTT AG
    Inventors: Martin Lotze, Thomas Roßmeier, Clemens Ottermann, Volker Seibert
  • Patent number: 10618834
    Abstract: An improved method and an improved apparatus are provided for producing a thin glass ribbon, which provide borders at the edges of the ribbon. The edges formed are of high mechanical quality and a formation of new secondary borders after the severing or at least the thickness of such secondary borders is reduced compared to the original borders. The method includes drawing the thin glass ribbon from a molten glass or from a preform, severing the borders, and cooling the resulting glass ribbon. The severing is effected at a location along the moving direction of the thin glass ribbon and at a time at which during the cooling of the thin glass ribbon the viscosity of the glass is in a range from 107 dPa·s to 1011 dPa·s, so that the edges of the thin glass ribbon newly produced by the severing of the borders are rounded off.
    Type: Grant
    Filed: November 14, 2016
    Date of Patent: April 14, 2020
    Assignee: SCHOTT AG
    Inventors: Andreas Habeck, Thomas Rossmeier, Jürgen Vogt, Ulrich Lange, Stephan Zachmann, Thomas Wiegel
  • Patent number: 10584054
    Abstract: A method for separating a thin glass, in which method the thin glass is progressively heated along a path which forms a parting line, wherein the heating of the glass is realized by way of the energy of at least one energy source within an area of action of the energy source on the thin glass, and, by way of a temperature gradient of the glass heated by way of the at least one energy source in relation to the surrounding glass, a mechanical stress is generated in the glass, by way of which mechanical stress, a crack propagates, following the mechanical stress, along the parting line.
    Type: Grant
    Filed: July 27, 2017
    Date of Patent: March 10, 2020
    Assignee: Schott AG
    Inventors: Jürgen Vogt, Thomas Rossmeier, Dirk Förtsch
  • Patent number: 10571376
    Abstract: A method for testing the strength of a sheet-like element having two opposite faces and made of hard brittle material under tensile stress is provided. The method includes passing each of the faces of the element over a roller and thereby bending the element so that each of the faces is subjected to a first tensile stress in a portion in which the opposite face is in contact with a surface of the roller; exerting a second tensile force on the element in the direction of advancement so that both faces are subjected to the second tensile stress of at least 2 MPa so that the first and second tensile stresses add up to define a resultant tensile stress; and monitoring the element and determining whether the element has a defined breaking strength equal to the resultant tensile stress or whether the element breaks under the resultant tensile stress.
    Type: Grant
    Filed: September 9, 2016
    Date of Patent: February 25, 2020
    Assignee: SCHOTT AG
    Inventors: Martin Lotze, Thomas Roßmeier, Clemens Ottermann, Volker Seibert
  • Patent number: 10407336
    Abstract: A method for cutting a thin glass including the steps of guiding, by a transport device, the thin glass ribbon over a levitation support, and directing, within a range of the levitation support, a laser beam onto the thin glass ribbon, which heats up the thin glass ribbon at an impingement point of the laser beam. The method also includes the step of blowing, by a cooling jet generator, a cooling fluid onto the track heated by the laser beam so that a region heated by the laser beam is cooled down and a mechanical stress is created. The cooling fluid contains vapor of a liquid at a saturation ratio of at least 0.5 or a plurality of liquid droplets. The liquid droplets form a contact angle on a surface of the thin glass ribbon which is smaller than that of water on the same surface.
    Type: Grant
    Filed: August 25, 2017
    Date of Patent: September 10, 2019
    Assignee: Schott AG
    Inventors: Thomas Rossmeier, Andreas Ortner, Jürgen Vogt, Andreas Habeck, Clemens Ottermann, Dirk Förtsch, Christian Breitbach, Stephan Behle
  • Patent number: 10329191
    Abstract: A glass roll, as well as a device and a method for manufacturing the glass roll are provided. The glass roll includes a glass ribbon having a thickness, a length in an x-direction, and a width in a y-direction. The glass ribbon has at least one defect site at a position, as well as at least one error mark disposed on the glass ribbon, and is wound up into a glass roll.
    Type: Grant
    Filed: April 21, 2016
    Date of Patent: June 25, 2019
    Assignee: SCHOTT AG
    Inventors: Andreas Ortner, Andreas Habeck, Clemens Ottermann, Thomas Roßmeier, Frank Macherey, Jürgen Vogt, Rainer Liebald, Thomas Wiegel, Ulrich Battmer, Uwe Wilkens
  • Publication number: 20180037490
    Abstract: A method for cutting a thin glass including the steps of guiding, by a transport device, the thin glass ribbon over a levitation support, and directing, within a range of the levitation support, a laser beam onto the thin glass ribbon, which heats up the thin glass ribbon at an impingement point of the laser beam. The method also includes the step of blowing, by a cooling jet generator, a cooling fluid onto the track heated by the laser beam so that a region heated by the laser beam is cooled down and a mechanical stress is created. The cooling fluid contains vapor of a liquid at a saturation ratio of at least 0.5 or a plurality of liquid droplets. The liquid droplets form a contact angle on a surface of the thin glass ribbon which is smaller than that of water on the same surface.
    Type: Application
    Filed: August 25, 2017
    Publication date: February 8, 2018
    Applicant: Schott AG
    Inventors: Thomas Rossmeier, Andreas Ortner, Jürgen Vogt, Andreas Habeck, Clemens Ottermann, Dirk Förtsch, Christian Breitbach, Stephan Behle
  • Publication number: 20170369357
    Abstract: A method for separating a thin glass, in which method the thin glass is progressively heated along a path which forms a parting line, wherein the heating of the glass is realized by way of the energy of at least one energy source within an area of action of the energy source on the thin glass, and, by way of a temperature gradient of the glass heated by way of the at least one energy source in relation to the surrounding glass, a mechanical stress is generated in the glass, by way of which mechanical stress, a crack propagates, following the mechanical stress, along the parting line.
    Type: Application
    Filed: July 27, 2017
    Publication date: December 28, 2017
    Applicant: Schott AG
    Inventors: Jürgen Vogt, Thomas Rossmeier, Dirk Förtsch
  • Publication number: 20170240368
    Abstract: A method for winding up a glass ribbon is provided, in which, prior to winding up the glass ribbon, the two surfaces of the glass ribbon are each initially treated with a water-containing medium and subsequently dried so as to produce a defined content of water molecules on the two surfaces, by achieving a saturation of the surfaces of the glass ribbon with water, without bringing about an excess of water molecules. A glass roll is produced in which the electrostatic charge of the glass surface is reduced and, as a result, any undesired excess adherence of the glass surface to an interleaf material is prevented and, in this way, glass breakage, in particular during winding up and/or unwinding of the glass roll, can be markedly reduced.
    Type: Application
    Filed: March 16, 2016
    Publication date: August 24, 2017
    Applicant: SCHOTT AG
    Inventors: Thomas Roßmeier, Matthias Jotz, Thomas Wiegel, Clemens Ottermann, Jürgen Vogt
  • Publication number: 20170096364
    Abstract: A long-term bendable glass material includes a glass material having a bending radius in a range of 1 mm to 107 mm. The glass material is structured such that a number of breaks developing over a course of time after a storage period of at least one day displays a remaining probability of breaking of less than 0.1 for a storage time period of a maximum of half a year.
    Type: Application
    Filed: October 3, 2016
    Publication date: April 6, 2017
    Applicant: Schott AG
    Inventors: Clemens Ottermann, Kurt Nattermann, Markus Heiß-Chouquet, Jürgen Vogt, Thomas Roßmeier, Andreas Habeck
  • Publication number: 20170073264
    Abstract: A method and an apparatus for stabilizing the position of a sheet-like element made of hard brittle material during transportation thereof along a transport path is provided in which the element is guided through a roller chicane having three rollers.
    Type: Application
    Filed: September 9, 2016
    Publication date: March 16, 2017
    Applicant: SCHOTT AG
    Inventors: Martin Lotze, Thomas Rossmeier, Clemens Ottermann, Volker Seibert
  • Publication number: 20170074762
    Abstract: A method for testing the strength of a sheet-like element having two opposite faces and made of hard brittle material under tensile stress is provided. The method includes passing each of the faces of the element over a roller and thereby bending the element so that each of the faces is subjected to a first tensile stress in a portion in which the opposite face is in contact with a surface of the roller; exerting a second tensile force on the element in the direction of advancement so that both faces are subjected to the second tensile stress of at least 2 MPa so that the first and second tensile stresses add up to define a resultant tensile stress; and monitoring the element and determining whether the element has a defined breaking strength equal to the resultant tensile stress or whether the element breaks under the resultant tensile stress.
    Type: Application
    Filed: September 9, 2016
    Publication date: March 16, 2017
    Applicant: SCHOTT AG
    Inventors: Martin Lotze, Thomas Rossmeier, Clemens Ottermann, Volker Seibert
  • Publication number: 20170057860
    Abstract: An improved method and an improved apparatus are provided for producing a thin glass ribbon, which provide borders at the edges of the ribbon. The edges formed are of high mechanical quality and a formation of new secondary borders after the severing or at least the thickness of such secondary borders is reduced compared to the original borders. The method includes drawing the thin glass ribbon from a molten glass or from a preform, severing the borders, and cooling the resulting glass ribbon. The severing is effected at a location along the moving direction of the thin glass ribbon and at a time at which during the cooling of the thin glass ribbon the viscosity of the glass is in a range from 107 dPa·s to 1011 dPa·s, so that the edges of the thin glass ribbon newly produced by the severing of the borders are rounded off.
    Type: Application
    Filed: November 14, 2016
    Publication date: March 2, 2017
    Applicant: SCHOTT AG
    Inventors: Andreas HABECK, Thomas ROSSMEIER, Jürgen VOGT, Ulrich LANGE, Stephan ZACHMANN, Thomas WIEGEL
  • Publication number: 20170001898
    Abstract: A method for producing thing glass strips is provided that avoids camber defects. The method includes using a glass strip forming device that has a drawing device; drawing, using the drawing device, the thin glass strip away from the glass strip forming device; measuring, using a measuring device, variables that are dependent on a differing length of edges of the thin glass strip at at least two measurement locations spaced apart transversely to a longitudinal extension of the thin glass strip; determining a difference or a quotient of the variables. The difference or the quotient is used to determine a control variable by which the glass strip forming device is controlled so as to counteract a difference in velocities of the thin glass strip between the two opposite edges.
    Type: Application
    Filed: September 13, 2016
    Publication date: January 5, 2017
    Applicant: SCHOTT AG
    Inventors: Andreas ORTNER, Thomas ROSSMEIER, Jürgen VOGT, Marius NECEL