Patents by Inventor Don M. Lipkin

Don M. Lipkin 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: 10822998
    Abstract: High-temperature machine components, more particularly, articles capable of operating in high-temperature environments, including for example turbines of gas engines, may be formed of a high temperature ceramic matrix composite that includes a ceramic substrate including silicon; an environmental harrier coating system including a silicon containing bond coat; and a diffusion barrier layer of a carbide or a nitride between the substrate of the article and the silicon bond coat of the environmental barrier coating system. The diffusion harrier layer selectively prevents or reduces the diffusion of boron and impurities from the substrate to the bond coat of the environmental barrier coating system.
    Type: Grant
    Filed: March 4, 2014
    Date of Patent: November 3, 2020
    Assignee: General Electric Company
    Inventors: Krishan Lal Luthra, Don M. Lipkin, Julin Wan
  • Patent number: 10614989
    Abstract: In the present invention, a flat emitter is formed by the formation of emitter material wires into a unitary non-porous flat emitter structure. The wires are formed with increased yield and tensile strength as a result of the manner of the formation of the emitter material or metal into the wires that is transferred to the flat emitter. To form the flat emitter, the wires are encapsulated and subjected to sufficient temperatures and pressure in a hot isostatic pressing treatment/process to increase the density of the wires into a solid sheet without the presence of voids or pores in the sheet. In forming the emitter sheet in this manner, the strength properties from the wires are retained within the sheet to provide the emitter with increased creep resistance and a consequently longer useful life in the x-ray tube.
    Type: Grant
    Filed: August 29, 2017
    Date of Patent: April 7, 2020
    Assignee: General Electric Company
    Inventors: Donald R. Allen, Gregory A. Steinlage, Steve Buresh, Don M. Lipkin
  • Publication number: 20160017749
    Abstract: High-temperature machine components, more particularly, articles capable of operating in high-temperature environments, including for example turbines of gas engines, may be formed of a high temperature ceramic matrix composite that includes a ceramic substrate including silicon; an environmental harrier coating system including a silicon containing bond coat; and a diffusion barrier layer of a carbide or a nitride between the substrate of the article and the silicon bond coat of the environmental barrier coating system. The diffusion harrier layer selectively prevents or reduces the diffusion of boron and impurities from the substrate to the bond coat of the environmental barrier coating system.
    Type: Application
    Filed: March 4, 2014
    Publication date: January 21, 2016
    Inventors: Krishan Lal LUTHRA, Don M. LIPKIN, Julin WAN
  • Publication number: 20110062247
    Abstract: A flow regulating article is provided. The flow regulating article, in an exemplary embodiment, includes a patterned structure. The patterned structure includes a shape memory alloy capable of changing shape at predetermined temperatures.
    Type: Application
    Filed: November 10, 2010
    Publication date: March 17, 2011
    Applicant: GENERAL ELECTRIC COMPANY
    Inventors: Liang Jiang, Don M. Lipkin
  • Patent number: 7854391
    Abstract: A flow regulating article is provided. The flow regulating article, in an exemplary embodiment, includes a patterned structure. The patterned structure includes a shape memory alloy capable of changing shape at predetermined temperatures.
    Type: Grant
    Filed: April 27, 2006
    Date of Patent: December 21, 2010
    Assignee: General Electric Company
    Inventors: Liang Jiang, Don M. Lipkin
  • Publication number: 20100159262
    Abstract: A composition useful as a thermal barrier coating on a superalloy substrate intended for use in hostile thermal environments. The coating comprises zirconia stabilized in a predominately tetragonal phase. The composition includes a ceramic component consisting essentially of zirconia (ZrO2) or a combination of zirconia and hafnia (HfO2) and a stabilizer component comprising, in combination, a first co-stabilizer selected from YbO1.5, HoO1.5, ErO1.5, TmO1.5, LuO1.5, and combinations thereof, and optionally YO1.5, a second co-stabilizer selected from TiO2, PdO2, VO2, GeO2, and combinations thereof, and a third co-stabilizer comprising TaO2.5. The stabilizer component is present in an amount effective to achieve the predominantly tetragonal phase in the coating.
    Type: Application
    Filed: December 18, 2008
    Publication date: June 24, 2010
    Inventors: Ming Fu, Brian Thomas Hazel, Brett Boutwell, Tobias A. Schaedler, Curtis Alan Johnson, Don M. Lipkin, Douglas G. Konitzer, Venkat S. Venkataramani
  • Publication number: 20100159270
    Abstract: A composition useful as a thermal barrier coating on a superalloy substrate intended for use in hostile thermal environments. The coating comprises zirconia stabilized in a predominately tetragonal phase. The composition includes a ceramic component consisting essentially of zirconia (ZrO2) or a combination of zirconia and hafnia (HfO2) and a stabilizer component comprising, in combination, a first co-stabilizer selected from YbO1.5, HoO1.5, ErO1.5, TmO1.5, LuO1.5, and combinations thereof, and a second co-stabilizer selected from TiO2, PdO2, VO2, GeO2, and combinations thereof. Optionally, the stabilizer component includes Y2O3. The stabilizer component is present in an amount effective to achieve the predominantly tetragonal phase in the coating.
    Type: Application
    Filed: December 18, 2008
    Publication date: June 24, 2010
    Inventors: Ming Fu, Brian Thomas Hazel, Brett Boutwell, Tobias A. Schaedler, Curtis Alan Johnson, Don M. Lipkin, Venkat S. Venkataramani