Patents by Inventor Klaus Schönberger

Klaus Schönberger 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: 20240010539
    Abstract: A method of making glass products includes: heating material to obtain a glass melt; heating the glass melt in a melting tank having a melting tank bottom, the glass melt having a melt volume, a melt surface, and a viscosity of 102 dPas at a temperature above 1580° C. The glass melt is heated such that at least some of the glass melt has a viscosity of 102.5 dPas or less. An amount of thermal energy introduced directly into the melt volume is more than 60% of a total amount of thermal energy introduced into the glass melt. A maximum difference between a temperature at a location on the melt surface and a temperature at a location at the melting tank bottom vertically underneath the location on the melt surface is such that a difference in glass melt densities is less than 0.05 g/cm3 per meter distance between the locations.
    Type: Application
    Filed: September 20, 2023
    Publication date: January 11, 2024
    Applicant: Schott AG
    Inventors: Hildegard Römer, Michael Hahn, Stefan Rosner, Volker Trinks, Rainer Eichholz, Christoph Bergmann, Armin Vogl, Jörg Hessenkemper, Horst Blei, Klaus Schönberger, Sybille Haas, Guido Räke, Stefan Schmitt, Christoph Berndhäuser, Olaf Claussen, Christopher Klein, Wolfgang Schmidbauer
  • Publication number: 20230021281
    Abstract: A method and an apparatus for melting and refining glass, glass ceramic, or ceramizable to form glass ceramic are provided. The method and apparatus refine the materials such that less than 1 bubble/kg is included in the molten and refined material and the direct CO2 emissions amount to less than 100 kg per ton of molten material during the melting and refining.
    Type: Application
    Filed: September 6, 2022
    Publication date: January 19, 2023
    Applicant: SCHOTT AG
    Inventors: Hildegard RÖMER, Wolfgang SCHMIDBAUER, Michael HAHN, Stefan SCHMITT, Klaus SCHÖNBERGER
  • Publication number: 20230002271
    Abstract: A product having a transparent volume-coloured glass-ceramic is provided. The glass-ceramic includes, based on oxide, 58-72% by weight SiO2, 16-26% by weight Al2O3, 1.0-5.5% by weight Li2O, 2.0-<4.0% by weight TiO2, 0-<2.0 by weight ZnO, and 0.005-0.12% by weight MoO3, and where the glass-ceramic, based on a thickness of 4 mm, has a luminous transmittance ?vis of 0.5%-3.5%, and where the glass-ceramic has the property that after passage through the glass-ceramic, based on a thickness of 4 mm, light of the standard illuminant D65 has a colour locus in the white region A1 that in the CIExyY-2° chromaticity diagram is defined by the following coordinates: A1 0.3 0.27 0.28 0.315 0.35 0.38 0.342 0.31 0.3 0.27.
    Type: Application
    Filed: June 29, 2022
    Publication date: January 5, 2023
    Applicant: SCHOTT AG
    Inventors: Evelin Weiss, Klaus Schönberger, Johannes Stinner, Matthias Bockmeyer, Philipp Langer, Reiner Best
  • Patent number: 11312652
    Abstract: Transparent, dyed cook top or hob with improved color display capability, consisting of a glass ceramic with high quartz mixed crystals as predominant crystal phase, whereby the glass-ceramic contains none of the chemical refining agents arsenic oxide and/or antimony, with transmission values of greater than 0.1% in the range of the visible light within the entire wavelength range greater than 450 nm, a light transmission in the visible of 0.8-2.5% and a transmission in the infrared at 1600 nm of 45-85%.
    Type: Grant
    Filed: June 4, 2019
    Date of Patent: April 26, 2022
    Assignee: Schott AG
    Inventors: Friedrich Siebers, Ulrich Schiffner, Wolfgang Schmidbauer, Klaus Schoenberger
  • Patent number: 10562807
    Abstract: Transparent, dyed cook top or hob with improved color display capability, consisting of a glass ceramic with high quartz mixed crystals as predominant crystal phase, whereby the glass-ceramic contains none of the chemical refining agents arsenic oxide and/or antimony, with transmission values of greater than 0.1% in the range of the visible light within the entire wavelength range greater than 450 nm, a light transmission in the visible of 0.8-2.5% and a transmission in the infrared at 1600 nm of 45-85%.
    Type: Grant
    Filed: May 14, 2015
    Date of Patent: February 18, 2020
    Assignee: SCHOTT AG
    Inventors: Friedrich Siebers, Ulrich Schiffner, Wolfgang Schmidbauer, Klaus Schoenberger
  • Publication number: 20190315652
    Abstract: Transparent, dyed cook top or hob with improved color display capability, consisting of a glass ceramic with high quartz mixed crystals as predominant crystal phase, whereby the glass-ceramic contains none of the chemical refining agents arsenic oxide and/or antimony, with transmission values of greater than 0.1% in the range of the visible light within the entire wavelength range greater than 450 nm, a light transmission in the visible of 0.8-2.5% and a transmission in the infrared at 1600 nm of 45-85%.
    Type: Application
    Filed: June 4, 2019
    Publication date: October 17, 2019
    Applicant: SCHOTT AG
    Inventors: Friedrich SIEBERS, Ulrich SCHIFFNER, Wolfgang SCHMIDBAUER, Klaus SCHOENBERGER
  • Publication number: 20190062201
    Abstract: A description is given of a coloured, transparent, lithium aluminium silicate glass-ceramic and also of the use thereof, said glass-ceramic possessing a light transmission Y of 2.5% to 10% and a spectral transmission ?(at 465 nm) of more than 1.0%.
    Type: Application
    Filed: August 21, 2018
    Publication date: February 28, 2019
    Applicant: SCHOTT AG
    Inventors: Evelin Weiss, Martin Spier, Matthias Bockmeyer, Thomas Zenker, Klaus Schönberger, Johannes Stinner, Oliver Hochrein, Uwe Martens, Michael Bug
  • Patent number: 9676643
    Abstract: A method for producing bubble-free glasses is provided, in which a glass mixture that is arsenic-free, antimony-free and tin-free with the exception of any unavoidable raw material impurities and at least one sulfate compound as a refining agent are used. The glass mixture and refining agent are melted and primarily refined in a first region of a melting tank, an average melting temperature (T1) is set at T1>1580° C. and an average melt residence time (t1) is set at t1>2 hours. A secondary refinement is carried out in a second region, an average melting temperature (T2) is set at T2>1660° C. and an average melt residence time (t2) is set at t2>1 hour, and the proportion of the SO3 resulting from decomposition of the sulfate is reduced to less than 0.002 wt. %.
    Type: Grant
    Filed: August 20, 2014
    Date of Patent: June 13, 2017
    Assignee: SCHOTT AG
    Inventors: Frank-Thomas Lentes, Karin Naumann, Ulrich Schiffner, Friedrich Siebers, Christian Mueller, Klaus Schoenberger, Evelin Weiss
  • Patent number: 9446982
    Abstract: Transparent or transparent dyed lithium aluminum silicate (LAS) glass ceramic material is provided that has an adapted thermal expansion. The material includes high-quartz mixed crystals as the predominant crystalline phase, and a thermal expansion between room temperature and 700° C. from 1.0 to 2.5·10?6/K.
    Type: Grant
    Filed: May 17, 2011
    Date of Patent: September 20, 2016
    Assignee: SCHOTT AG
    Inventors: Friedrich Siebers, Evelin Weiss, Klaus Schoenberger
  • Patent number: 9296645
    Abstract: A transparent low-colour lithium aluminium silicate (LAS) glass ceramic and the use thereof are provided. The ceramic has an environmentally friendly composition with high-quartz mixed crystals as the main crystal phase. The glass ceramic contains the following components (in wt % on the basis of oxide): TiO2 1.6-<2.5; Nd2O3 0.005-0.15; MgO 0.2-1.0; ZnO 1-2.5; CaO+SrO 0-1.5; BaO 0-1.5 with the condition B1: MgO+ZnO>CaO+SrO +BaO. In some embodiments, the glass ceramic has a hue c* of less than 5.5, a light transmission Y greater than 81% and has no visually disruptive diffusion.
    Type: Grant
    Filed: August 19, 2014
    Date of Patent: March 29, 2016
    Assignee: SCHOTT AG
    Inventors: Friedrich Siebers, Evelin Weiss, Klaus Schoenberger, Ulrich Schiffner, Falk Gabel
  • Patent number: 9199872
    Abstract: The method of environmentally friendly melting and refining a glass melt of a crystallizable glass, which is used for making a lithium aluminum silicate (LAS) glass ceramic, includes the steps of providing a glass batch with a main batch composition within a lithium aluminum silicate (LAS) glass system, in which 0.1-<0.6% by weight of tin oxide has been added as main refining agent, but which does not contain arsenic oxide and/or antimony oxide as refining agent, formulating a raw material mixture for the glass batch, so that less than 40% by weight of the raw material mixture is quartz sand and then refining a glass melt formed from the glass batch at temperatures of at least 1600° C.
    Type: Grant
    Filed: March 4, 2010
    Date of Patent: December 1, 2015
    Assignee: SCHOTT AG
    Inventors: Klaus Schoenberger, Friedrich Siebers, Ioannis Kosmas, Matthias Stubenrauch, Horst Blei, Reiner Best, Eckhart Doering, Udo Jakob
  • Publication number: 20150239771
    Abstract: Transparent, dyed cook top or hob with improved color display capability, consisting of a glass ceramic with high quartz mixed crystals as predominant crystal phase, whereby the glass-ceramic contains none of the chemical refining agents arsenic oxide and/or antimony, with transmission values of greater than 0.1% in the range of the visible light within the entire wavelength range greater than 450 nm, a light transmission in the visible of 0.8-2.5% and a transmission in the infrared at 1600 nm of 45-85%.
    Type: Application
    Filed: May 14, 2015
    Publication date: August 27, 2015
    Inventors: Friedrich SIEBERS, Ulrich Schiffner, Wolfgang Schmidbauer, Klaus Schoenberger
  • Patent number: 9061937
    Abstract: Transparent, dyed cook top or hob with improved color display capability, consisting of a glass ceramic with high quartz mixed crystals as predominant crystal phase, whereby the glass-ceramic contains none of the chemical refining agents arsenic oxide and/or antimony, with transmission values of greater than 0.1% in the range of the visible light within the entire wavelength range greater than 450 nm, a light transmission in the visible of 0.8-2.5% and a transmission in the infrared at 1600 nm of 45-85%.
    Type: Grant
    Filed: September 16, 2009
    Date of Patent: June 23, 2015
    Assignee: Schott AG
    Inventors: Friedrich Siebers, Ulrich Schiffner, Wolfgang Schmidbauer, Klaus Schönberger
  • Publication number: 20140356608
    Abstract: A method for producing bubble-free glasses is provided, in which a glass mixture that is arsenic-free and antimony-free with the exception of any unavoidable raw material impurities and a sulfate compound and SnO2 as refining agents are used. The glass mixture is melted and primarily refined in a first region of a melting tank, an average melting temperature (T1) is set at T1>1560° C. and an average melt residence time (t1) is set at t1>2 hours. The proportion of SO3 resulting from the decomposition of the sulfate compound is reduced to less than 0.002 wt. % as the primary refinement is carried out. A secondary refinement is carried out in a second region of the melting tank, an average melting temperature (T2) is set at T2>1640° C. and an average melt residence time (t2) is set at t2>1 hour.
    Type: Application
    Filed: August 19, 2014
    Publication date: December 4, 2014
    Inventors: Frank-Thomas LENTES, Karin NAUMANN, Ulrich SCHIFFNER, Friedrich SIEBERS, Christian MUELLER, Klaus SCHOENBERGER, Evelin WEISS
  • Publication number: 20140356609
    Abstract: A method for producing bubble-free glasses is provided, in which a glass mixture that is arsenic-free, antimony-free and tin-free with the exception of any unavoidable raw material impurities and at least one sulfate compound as a refining agent are used. The glass mixture and refining agent are melted and primarily refined in a first region of a melting tank, an average melting temperature (T1) is set at T1>1580° C. and an average melt residence time (t1) is set at t1>2 hours. A secondary refinement is carried out in a second region, an average melting temperature (T2) is set at T2>1660° C. and an average melt residence time (t2) is set at t2>1 hour, and the proportion of the SO3 resulting from decomposition of the sulfate is reduced to less than 0.002 wt. %.
    Type: Application
    Filed: August 20, 2014
    Publication date: December 4, 2014
    Inventors: Frank-Thomas LENTES, Karin NAUMANN, Ulrich SCHIFFNER, Friedrich SIEBERS, Christian MUELLER, Klaus SCHOENBERGER, Evelin WEISS
  • Publication number: 20140357468
    Abstract: A transparent low-colour lithium aluminium silicate (LAS) glass ceramic and the use thereof are provided. The ceramic has an environmentally friendly composition with high-quartz mixed crystals as the main crystal phase. The glass ceramic contains the following components (in wt % on the basis of oxide): TiO2 1.6-<2.5; Nd2O3 0.005-0.15; MgO 0.2-1.0; ZnO 1-2.5; CaO+SrO 0-1.5; BaO 0-1.5 with the condition B1: MgO+ZnO>CaO+SrO+BaO. In some embodiments, the glass ceramic has a hue c* of less than 5.5, a light transmission Y greater than 81% and has no visually disruptive diffusion.
    Type: Application
    Filed: August 19, 2014
    Publication date: December 4, 2014
    Inventors: Friedrich Siebers, Evelin Weiss, Klaus Schoenberger, Ulrich Schiffner, Falk Gabel
  • Patent number: 8615984
    Abstract: A device is provided for the distribution of flowable additives in exhaust gas systems of an internal combustion engine, in particular for the distribution of a water/urea mixture in an exhaust gas system of a diesel engine, having an injection device in particular opening into the exhaust tract before a so-called SRC catalytic converter, with a swirl generation device being provided for the improvement of the mixing of the exhaust gas with the additive in the introduction region of the additive in the exhaust tract.
    Type: Grant
    Filed: May 7, 2008
    Date of Patent: December 31, 2013
    Assignees: Friedrich Boysen GmbH & Co. KG, Bayerische Motoren Werke Aktiengesellschaft
    Inventors: Heinz Kornherr, Michael Mueller, Klaus Schoenberger, Bernhard Aichhorn, Gert Barnstedt, Hans-Juergen Bruene
  • Patent number: 8607550
    Abstract: A system is provided for admixing a reducing agent to an exhaust gas flow of an internal-combustion engine. The system includes an exhaust line and a metering device for feeding the reducing agent into the exhaust line, the metering device is arranged in or on a hollow body arranged on the exhaust line. An inner volume of the hollow body is connected in an exhaust-gas-conducting manner with the exhaust line. The reducing agent is feedable by a nozzle into the hollow body. A jacket body is provided between the hollow body and the nozzle-fed reducing agent, which jacket body surrounds the reducing agent at least in areas in the inner volume. Accordingly, a depositing of reducing agent on the metering device and on the hollow body is substantially avoided.
    Type: Grant
    Filed: March 16, 2010
    Date of Patent: December 17, 2013
    Assignee: Bayerische Motoren Werke Aktiengesellschaft
    Inventors: Ruediger Tangemann, Klaus Schoenberger, Karl Mayr
  • Publication number: 20130164509
    Abstract: Transparent or transparent dyed lithium aluminium silicate (LAS) glass ceramic material is provided that has an adapted thermal expansion. The material includes high-quartz mixed crystals as the predominant crystalline phase, and a thermal expansion between room temperature and 700° C. from 1.0 to 2.5·10?6/K.
    Type: Application
    Filed: May 17, 2011
    Publication date: June 27, 2013
    Applicant: SCHOTT AG
    Inventors: Friedrich Siebers, Evelin Weiss, Klaus Schoenberger
  • Publication number: 20120302422
    Abstract: A lithium-aluminosilicate glass or a corresponding glass ceramic that has a content of 0-0.4SnO2, 1.3-2.7% by weight of ?SnO2+TiO2, 1.3-2.5% by weight of ZrO2, 3.65-4.3% by weight of ?ZrO2+0.87 (TiO2+SnO2), ?0.04% by weight of Fe2O3, 50-4000 ppm of Nd2O3 and 0-50 ppm of CoO is described. The glass or the glass ceramic is color-neutral, has a turbidity of less than 1% HAZE and a high light transmission. The glazing time for conversion of the glass into glass ceramic is especially short with less than 2.5 hours.
    Type: Application
    Filed: August 6, 2012
    Publication date: November 29, 2012
    Applicant: SCHOTT AG
    Inventors: Friedrich SIEBERS, Ulrich SCHIFFNER, Wolfgang SCHMIDBAUER, Klaus SCHÖNBERGER