Patents by Inventor Georg Müller

Georg Müller 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: 11761500
    Abstract: A damping material 10 for a damping layer or interlayer of a brake lining has at least one rubber content and one resin content. A plurality of macroscopic, heterogeneously delimited areas are formed in the damping material 10, areas comprising rubber areas 1 with a high rubber content of at least 3% to maximally 50% by weight, and resin areas 2 with a high resin content of at least 5% by weight, wherein the rubber areas 1 are free of resin or have a resin content ?5% by weight, and the resin areas 2 are free of rubber.
    Type: Grant
    Filed: May 13, 2021
    Date of Patent: September 19, 2023
    Assignee: TMD Friction Services GmbH
    Inventors: Georg Müller, Mirza Lakota, Harald Bendt, Katja Lieb
  • Publication number: 20220145955
    Abstract: Aluminum alloys, in particular Al magnesium or Al titanium alloys, are suitable as corrosion protection media in friction linings for automotive brakes and couplings, and serve as a replacement for zinc metal or zinc compounds in such linings.
    Type: Application
    Filed: January 24, 2022
    Publication date: May 12, 2022
    Applicant: TMD Friction Services GmbH
    Inventors: Georg MÜLLER, Enrique Javier Wegmann Vicuna
  • Publication number: 20210364052
    Abstract: A damping material 10 for a damping layer or interlayer of a brake lining has at least one rubber content and one resin content. A plurality of macroscopic, heterogeneously delimited areas are formed in the damping material 10, said areas comprising rubber areas 1 with a high rubber content of at least 3% to maximally 50% by weight, and resin areas 2 with a high resin content of at least 5% by weight, wherein the rubber areas 1 are free of resin or have a resin content ?5% by weight, and the resin areas 2 are free of rubber.
    Type: Application
    Filed: May 13, 2021
    Publication date: November 25, 2021
    Applicant: TMD Friction Services GmbH
    Inventors: Georg MÜLLER, Mirza LAKOTA, Harald BENDT, Katja LIEB
  • Patent number: 10859607
    Abstract: A fiber optic sensor and related method are described, with the sensor including a cross-coupling element in the optical path between a polarizing element and a sensing element, but separated from the sensing element itself; with the cross-coupling element generating a defined cross-coupling between the two orthogonal polarization states of the fundamental mode of a polarization maintaining fiber guiding light from the light source to the sensing element thus introducing a wavelength-dependent or temperature-dependent sensor signal shift to balance wavelength-dependent or temperature-dependent signal shifts due to other elements of the sensor, particularly signal shifts due to the wavelength dependence of the Faraday effect or the electro-optic effect constant.
    Type: Grant
    Filed: February 14, 2019
    Date of Patent: December 8, 2020
    Assignee: ABB Power Grids Switzerland AG
    Inventors: Georg Müller, Klaus Bohnert, Andreas Frank, Philippe Gabus
  • Publication number: 20200309222
    Abstract: Aluminum alloys, in particular Al magnesium or Al titanium alloys, are suitable as corrosion protection media in friction linings for automotive brakes and couplings, and serve as a replacement for zinc metal or zinc compounds in such linings.
    Type: Application
    Filed: March 12, 2020
    Publication date: October 1, 2020
    Applicant: TMD Friction Services GmbH
    Inventors: Georg MÜLLER, Enrique WEGMANN
  • Patent number: 10481182
    Abstract: There is described an optical fiber current sensor having an opto-electronic module part for detecting an optical phase shift induced by the measurand field in a sensing fiber, a sensor head including the sensing fiber, wherein the sensing fiber is a spun highly-birefringent fiber having a length L=? ds defined by the line integral along the space curve given by the sensing fiber coil such that the length L of the sensing fiber is sufficiently long to suppress thermal signal instabilities due to the spun character of the sensing fiber while the effective number of fiber windings is low enough to maintain a maximum sensitivity over the full measurement range of the fiber-optical sensor.
    Type: Grant
    Filed: February 16, 2017
    Date of Patent: November 19, 2019
    Assignee: ABB Schweiz AG
    Inventors: Georg Müller, Klaus Bohnert, Andreas Frank, Lin Yang
  • Patent number: 10466278
    Abstract: It is proposed to use a spun birefringent fiber for a current sensor or magnetic field sensor. The fiber has a birefringence that increases with temperature. In this case, the temperature dependence of the fiber's sensitivity to magnetic fields counteracts the temperature dependence of the fiber's Verdet constant, which allows to design current and field sensors that have reduced temperature dependence.
    Type: Grant
    Filed: July 14, 2017
    Date of Patent: November 5, 2019
    Assignee: ABB Schweiz AG
    Inventors: Georg Müller, Klaus Bohnert, Andreas Frank, Yang Lin
  • Publication number: 20190195921
    Abstract: A fiber optic sensor and related method are described, with the sensor including a cross-coupling element in the optical path between a polarizing element and a sensing element, but separated from the sensing element itself; with the cross-coupling element generating a defined cross-coupling between the two orthogonal polarization states of the fundamental mode of a polarization maintaining fiber guiding light from the light source to the sensing element thus introducing a wavelength-dependent or temperature-dependent sensor signal shift to balance wavelength-dependent or temperature-dependent signal shifts due to other elements of the sensor, particularly signal shifts due to the wavelength dependence of the Faraday effect or the electro-optic effect constant.
    Type: Application
    Filed: February 14, 2019
    Publication date: June 27, 2019
    Inventors: Georg Müller, Klaus Bohnert, Andreas Frank, Philippe Gabus
  • Patent number: 10247761
    Abstract: A fiber optic sensor and related method are described, with the sensor including a cross-coupling element in the optical path between a polarizing element and a sensing element, but separated from the sensing element itself; with the cross-coupling element generating a defined cross-coupling between the two orthogonal polarization states of the fundamental mode of a polarization maintaining fiber guiding light from the light source to the sensing element thus introducing a wavelength-dependent or temperature-dependent sensor signal shift to balance wavelength-dependent or temperature-dependent signal shifts due to other elements of the sensor, particularly signal shifts due to the wavelength dependence of the Faraday effect or the electro-optic effect constant.
    Type: Grant
    Filed: June 20, 2016
    Date of Patent: April 2, 2019
    Assignee: ABB Schweiz AG
    Inventors: Georg Müller, Klaus Bohnert, Andreas Frank, Philippe Gabus
  • Patent number: 9983236
    Abstract: A method of increasing accuracy of optical sensors based on generating two sets of light waves having different velocities in the presence of a non-vanishing measurand field within a sensing element of the sensor is described. A defined static bias phase shift is introduced between the two sets of light waves. The sensor converts a total optical phase shift including static bias optical phase shifts and measurand-induced optical phase shifts into anti-phase optical power changes in at least two detector channels. The method includes steps of normalizing the optical power changes after their conversion into electrical detector signals in the two detector channels to reduce effects of uneven intensity or power of the light source and different loss or gain in the detector channels. Further methods, sensors and apparatus for temperature stabilizing such optical sensors and novel sensors are also presented.
    Type: Grant
    Filed: June 20, 2016
    Date of Patent: May 29, 2018
    Assignee: ABB Schweiz AG
    Inventors: Klaus Bohnert, Andreas Frank, Georg Müller, Lin Yang
  • Publication number: 20170315158
    Abstract: It is proposed to use a spun birefringent fiber for a current sensor or magnetic field sensor. The fiber has a birefringence that increases with temperature. In this case, the temperature dependence of the fiber's sensitivity to magnetic fields counteracts the temperature dependence of the fiber's Verdet constant, which allows to design current and field sensors that have reduced temperature dependence.
    Type: Application
    Filed: July 14, 2017
    Publication date: November 2, 2017
    Inventors: Georg Müller, Klaus Bohnert, Andreas Frank, Yang Lin
  • Patent number: 9771219
    Abstract: A conveyor belt, in particular a pouch conveyor belt, with a first layer, which comprises a material with high flexibility, and to a conveying installation, in particular a pouch conveying installation, with such a conveyor belt.
    Type: Grant
    Filed: August 4, 2014
    Date of Patent: September 26, 2017
    Assignee: ContiTech Transportbandsysteme GmbH
    Inventors: Georg Müller, Daniel Vazquez-Maggio
  • Publication number: 20170160315
    Abstract: There is described an optical fiber cuing sensor having an opto-electronic module pan (10-2) for detecting an optical phase shift induced by the measurand field in a sensing fiber (12), a sensor head (10-1) including the sensing fiber (12), wherein the sensing fiber (12) is a spun highly-birefringent fiber having a length L=?ds defined by the line integral along the space curve given by the sensing fiber coil such that the length L of the sensing fiber (12) is sufficiently long to suppress thermal signal instabilities due to the spun character of the sensing fiber (12) while the effective number of fiber windings is low enough to maintain a maximum sensitivity over the full measurement range of the fiber-optical sensor (10).
    Type: Application
    Filed: February 16, 2017
    Publication date: June 8, 2017
    Inventors: Georg Müller, Klaus Bohnert, Andreas Frank, Lin Yang
  • Publication number: 20160377660
    Abstract: A fiber optic sensor and related method are described, with the sensor including a cross-coupling element in the optical path between a polarizing element and a sensing element, but separated from the sensing element itself; with the cross-coupling element generating a defined cross-coupling between the two orthogonal polarization states of the fundamental mode of a polarization maintaining fiber guiding light from the light source to the sensing element thus introducing a wavelength-dependent or temperature-dependent sensor signal shift to balance wavelength-dependent or temperature-dependent signal shifts due to other elements of the sensor, particularly signal shifts due to the wavelength dependence of the Faraday effect or the electro-optic effect constant.
    Type: Application
    Filed: June 20, 2016
    Publication date: December 29, 2016
    Inventors: Georg Müller, Klaus Bohnert, Andreas Frank, Philippe Gabus
  • Publication number: 20160305984
    Abstract: A method of increasing accuracy of optical sensors based on generating two sets of light waves having different velocities in the presence of a non-vanishing measurand field within a sensing element of the sensor is described. A defined static bias phase shift is introduced between the two sets of light waves. The sensor converts a total optical phase shift including static bias optical phase shifts and measurand-induced optical phase shifts into anti-phase optical power changes in at least two detector channels. The method includes steps of normalizing the optical power changes after their conversion into electrical detector signals in the two detector channels to reduce effects of uneven intensity or power of the light source and different loss or gain in the detector channels. Further methods, sensors and apparatus for temperature stabilizing such optical sensors and novel sensors are also presented.
    Type: Application
    Filed: June 20, 2016
    Publication date: October 20, 2016
    Inventors: Klaus Bohnert, Andreas Frank, Georg Müller, Lin Yang
  • Publication number: 20160289003
    Abstract: A conveyor belt, in particular a pouch conveyor belt, with a first layer, which comprises a material with high flexibility, and to a conveying installation, in particular a pouch conveying installation, with such a conveyor belt.
    Type: Application
    Filed: August 4, 2014
    Publication date: October 6, 2016
    Applicant: ContiTech Transportbandsysteme GmbH
    Inventors: Georg Müller, Daniel Vazquez-Maggio
  • Patent number: 8728233
    Abstract: The present invention relates to a method for the production of crystal layers or bulk crystals of group III nitride or of mixtures of different group III nitrides by means of precipitation, at a first temperature T1 in a first temperature range, from a group-III containing fused metal on a group-III-nitride crystal seed placed in the fused metal or on a foreign substrate placed in the fused metal, with the admixture of nitrogen in the fused metal at a pressure P. With the method a solvent additive is added to the fused metal which increases the conversion rate of group III metal to group III nitride in the fused metal. The fused metal runs through at least one temperature cycle with a first and a second process phase in which cycle the fused metal cools after the first process phase from the first temperature to a second temperature T2 below the first temperature range and at the end of the second process phase is heated from the second temperature back to a temperature within the first temperature range.
    Type: Grant
    Filed: October 4, 2005
    Date of Patent: May 20, 2014
    Assignee: Fraunhofer-Gesellschaft zur Foerderung der Angewandten Forschung E.V.
    Inventors: Jochen Friedrich, Georg Müller, Rainer Apelt, Elke Meissner, Bernhard Birkmann, Stephan Hussy
  • Publication number: 20120328502
    Abstract: The present invention relates to a preparation process for metal oxide nanotubes, the SiO2 nanotubes prepared by this process and the use of these nanotubes as catalyst supports. The invention especially concerns a supported catalyst system for polymerization of olefins, comprising a support made of fibers or a fleece of fibers.
    Type: Application
    Filed: December 16, 2010
    Publication date: December 27, 2012
    Applicant: BASELL POLYOLEFINE GMBH
    Inventors: Georg Müller, Rolf Mülhaupt, Marc Oliver Kristen
  • Patent number: 8133832
    Abstract: The present invention relates to new catalyst supports comprising nanofibers, a catalyst system comprising these supports as well as a process for preparing nanocomposites and the nanocomposites prepared. The invention especially concerns a supported catalyst system for polymerization of olefins, comprising a support made of fibers or a fleece of fibers, wherein the mean fiber diameter is less than 1000 nm, preferably less than 500 nm and the mean fiber length is more than 200,000 nm, preferably more than 500,000 nm and especially preferred more than 1,000,000 nm as well as a process for polymerizing olefinic systems in the presence of these catalyst systems and the resulting nanocomposites.
    Type: Grant
    Filed: July 22, 2008
    Date of Patent: March 13, 2012
    Assignee: Basell Polyolefine GmbH
    Inventors: Marc Oliver Kristen, Rolf Mülhaupt, Georg Müller
  • Publication number: 20100190931
    Abstract: The present invention relates to new catalyst supports comprising nanofibers, a catalyst system comprising these supports as well as a process for preparing nanocomposites and the nanocomposites prepared. The invention especially concerns a supported catalyst system for polymerization of olefins, comprising a support made of fibers or a fleece of fibers, wherein the mean fiber diameter is less than 1000 nm, preferably less than 500 nm and the mean fiber length is more than 200,000 nm, preferably more than 500,000 nm and especially preferred more than 1,000,000 nm as well as a process for polymerizing olefinic systems in the presence of these catalyst systems and the resulting nanocomposites.
    Type: Application
    Filed: July 22, 2008
    Publication date: July 29, 2010
    Inventors: Marc Oliver Kristen, Rolf Mülhaupt, Georg Müller