Patents by Inventor Paul Sheedy

Paul Sheedy 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: 20170342844
    Abstract: A composite article comprises a substrate, the substrate comprising a silicon containing material and an additive comprising boron nitride nanotubes.
    Type: Application
    Filed: May 31, 2016
    Publication date: November 30, 2017
    Inventors: Wayde R. Schmidt, Paul Sheedy, Neal Magdefrau
  • Publication number: 20170335118
    Abstract: An article comprising a substrate and at least one coating layer disposed on the substrate. The coating layer includes a silicate glass matrix, an oxygen scavenger phase dispersed through the silicate glass matrix, and at least one metal in metallic form.
    Type: Application
    Filed: May 19, 2016
    Publication date: November 23, 2017
    Inventors: Xia Tang, David C. Jarmon, Paul Sheedy, Virginia H. Faustino
  • Publication number: 20170275211
    Abstract: A ceramic article includes a ceramic matrix composite that has a porous reinforcement structure and a ceramic matrix within pores of the porous reinforcement structure. The ceramic matrix composite includes a surface zone and a glaze material within pores of the surface zone and on an exterior side of the surface zone as an exterior glaze layer.
    Type: Application
    Filed: June 9, 2017
    Publication date: September 28, 2017
    Inventors: Paul Sheedy, Wayde R. Schmidt, Tania Bhatia Kashyap
  • Patent number: 9765455
    Abstract: A method of preparing a fiber for use in forming a ceramic matrix composite material comprises the steps of removing a polymer coating from an outer surface of glass or ceramic fibers by providing heated and humidified gas across the glass or ceramic fibers for a period of time.
    Type: Grant
    Filed: January 13, 2015
    Date of Patent: September 19, 2017
    Assignee: United Technologies Corporation
    Inventors: Neal Magdefrau, Paul Sheedy, Tania Bhatia Kashyap
  • Patent number: 9732005
    Abstract: A method for forming in situ a boron nitride reaction product locally on a reinforcement phase of a ceramic matrix composite material includes the steps of providing a ceramic matrix composite material having a fiber reinforcement material; and forming in situ a layer of boron nitride on the fiber reinforcement material.
    Type: Grant
    Filed: March 31, 2015
    Date of Patent: August 15, 2017
    Assignee: United Technologies Corporation
    Inventors: Neal Magdefrau, Paul Sheedy
  • Publication number: 20170217844
    Abstract: A method of creating a component comprises forming a substrate and depositing a template material within the substrate, such that there are a plurality of template member. The component is heated to a temperature above a melting point of the template material, such that the template material wicks into a porosity of the substrate and forms a component with voids. An average hydraulic diameter of the voids is less than 1 millimeter.
    Type: Application
    Filed: April 18, 2017
    Publication date: August 3, 2017
    Inventors: Paul Sheedy, Wayde R. Schmidt
  • Patent number: 9719174
    Abstract: A composite article includes a substrate and a powder-derived composite coating on the substrate. The composite coating includes discrete regions of a first material and discrete regions of a second material. At least one of the first material or the second material is a chemical precursor.
    Type: Grant
    Filed: June 28, 2010
    Date of Patent: August 1, 2017
    Assignee: United Technologies Corporation
    Inventors: Wayde R. Schmidt, Paul Sheedy, William Werkheiser
  • Patent number: 9701591
    Abstract: A method for fabricating a ceramic material includes providing a mobilized filler material capable of infiltrating a porous ceramic matrix composite. The mobilized filler material includes at least one of a ceramic material and a free metal. The mobilized filler material is infiltrated into pores of the porous ceramic matrix composite. The mobilized filler material is then immobilized within the pores of the porous ceramic matrix composite.
    Type: Grant
    Filed: April 9, 2013
    Date of Patent: July 11, 2017
    Assignee: United Technologies Corporation
    Inventors: Paul Sheedy, Wayde R. Schmidt, Tania Bhatia Kashyap
  • Publication number: 20170128981
    Abstract: A method of forming a bulk metallic glass (BMG) cladding includes bringing a BMG material to a temperature lower than or equal to the crystallization temperature of the BMG material, and at least in some embodiments greater than or equal to the glass transition temperature of the BMG material and. The method also includes depositing the BMG material onto a substrate with interlock surface features such that the BMG material interlocks with the interlock surface features of the substrate.
    Type: Application
    Filed: November 9, 2015
    Publication date: May 11, 2017
    Applicant: DELAVAN INC
    Inventors: Paul Sheedy, Sonia Tulyani, Neal Magdefrau
  • Patent number: 9624138
    Abstract: A method of creating a component comprises forming a substrate and depositing a template material within the substrate, such that there are a plurality of template member. The component is heated to a temperature above a melting point of the template material, such that the template material wicks into a porosity of the substrate and forms a component with voids. An average hydraulic diameter of the voids is less than 1 millimeter. A component formed by the method, and the component itself are also disclosed.
    Type: Grant
    Filed: March 5, 2015
    Date of Patent: April 18, 2017
    Assignee: UNITED TECHNOLOGIES CORPORATION
    Inventors: Paul Sheedy, Wayde R. Schmidt
  • Publication number: 20170002249
    Abstract: A method for fabricating a ceramic material includes impregnating a porous structure with a mixture that includes a preceramic polymer and a filler. The filler includes at least one free metal. The preceramic polymer material is then rigidized to form a green body. The green body is then thermally treated to convert the rigidized preceramic polymer material into a ceramic matrix located within pores of the porous structure. The same thermal treatment or a second, further thermal treatment is used to cause the at least one free metal to move to internal porosity defined by the ceramic matrix or pores of the porous structure.
    Type: Application
    Filed: September 16, 2016
    Publication date: January 5, 2017
    Inventors: Wayde R. Schmidt, Tania Bhatia Kashyap, Paul Sheedy
  • Patent number: 9533919
    Abstract: A method for fabricating a ceramic material includes impregnating a porous structure with a mixture that includes a preceramic polymer and a filler. The filler includes at least one free metal. The preceramic polymer material is then rigidized to form a green body. The green body is then thermally treated to convert the rigidized preceramic polymer material into a ceramic matrix located within pores of the porous structure. The same thermal treatment or a second, further thermal treatment is used to cause the at least one free metal to move to internal porosity defined by the ceramic matrix or pores of the porous structure.
    Type: Grant
    Filed: October 12, 2011
    Date of Patent: January 3, 2017
    Assignee: United Technologies Corporation
    Inventors: Wayde R. Schmidt, Tania Bhatia Kashyap, Paul Sheedy
  • Publication number: 20160332922
    Abstract: An article includes a ceramic-based substrate and a barrier layer on the ceramic-based substrate. The barrier layer includes a matrix of barium-magnesium alumino-silicate or SiO2, a dispersion of silicon oxycarbide particles in the matrix, and a dispersion of particles, of the other of barium-magnesium alumino-silicate or SiO2, in the matrix.
    Type: Application
    Filed: January 7, 2015
    Publication date: November 17, 2016
    Inventors: Xia Tang, Paul Sheedy, Tania Bhatia Kashyap, Wayde R. Schmidt, Daniel G. Goberman
  • Publication number: 20160333454
    Abstract: An article includes a silicon oxycarbide-based layer that has Si, O, and C in a covalently bonded network. The silicon oxycarbide-based layer has first and second opposed surfaces. A calcium-magnesium alumino-silicate-based layer is interfaced with the first surface of the silicon oxycarbide-based layer.
    Type: Application
    Filed: January 8, 2015
    Publication date: November 17, 2016
    Inventors: Xia Tang, Paul Sheedy, Tania Bhatia Kashyap, Wayde R. Schmidt, Daniel G. Goberman
  • Publication number: 20160326610
    Abstract: A solid-state method for forming an alloy includes providing a powder that has heterogeneous particles with a ratio, by weight, of an amount of nickel to an amount of a metal. The ratio is selected in accordance with a compositional ratio that can substantially bear a nickel intermetallic precipitate of the nickel and the metal. The heterogeneous particles are then consolidated and thermally treated to interdiffuse the nickel and the metal. The interdiffused nickel and metal are then precipitation treated to precipitate the nickel intermetallic.
    Type: Application
    Filed: January 5, 2015
    Publication date: November 10, 2016
    Applicant: United Technologies Corporation
    Inventors: Aaron T. Nardi, Paul Sheedy, James T. Beals, Daniel V. Viens
  • Publication number: 20160305048
    Abstract: A method of preparing a fiber for use in forming a ceramic matrix composite material comprises the steps of removing a polymer coating from an outer surface of glass or ceramic fibers by providing heated and humidified gas across the glass or ceramic fibers for a period of time.
    Type: Application
    Filed: January 13, 2015
    Publication date: October 20, 2016
    Inventors: Neal Magdefrau, Paul Sheedy, Tania Bhatia Kashyap
  • Publication number: 20160264475
    Abstract: A method of preparing a fiber for use in forming a ceramic matrix composite material comprises the steps of removing an organic sizing from a fiber to provide pyrolyzed remnants on the fiber, and using the pyrolyzed remnants as a reactant to provide an interface coating on the fiber.
    Type: Application
    Filed: May 14, 2015
    Publication date: September 15, 2016
    Inventors: Paul Sheedy, Neal Magdefrau
  • Publication number: 20160243722
    Abstract: A disclosed method of forming a ceramic article includes forming a pre-ceramic polymer article within a mold tool, and performing a first pyrolizing step on the initial pre-ceramic polymer article to form a ceramic article. The method further includes performing at least one pre-heat treatment polymer infiltration and pyrolizing (PIP) cycle on the ceramic article and an initial heat treatment cycle of the ceramic article after the at least one pre-heat treatment PIP cycle. Subsequent PIP cycles and heat treatment cycles are performed in combination to form a ceramic article including a desired density.
    Type: Application
    Filed: September 29, 2014
    Publication date: August 25, 2016
    Inventors: Shahram Amini, Wayde R. Schmidt, Tania Bhatia Kashyap, Mark A. Hermann, Paul Sheedy, Andi M. Limarga, Michael G. McCaffrey
  • Publication number: 20160236990
    Abstract: Disclosed is a method for controlling a microstructure of an inorganic material includes providing a structure that has a first region of an inorganic material having a first microstructure and a second region that is thermally responsive to electromagnetic radiation, the second region being adjacent the first region, and indirectly heating the first region by thermally activating the second region, using electromagnetic radiation, to generate heat. The generated heat converts the first microstructure of the inorganic material to a second, different microstructure. The method can be applied to control a microstructure of an inorganic coating on an inorganic fiber.
    Type: Application
    Filed: September 24, 2014
    Publication date: August 18, 2016
    Inventors: Wayde R. Schmidt, Paul Sheedy
  • Publication number: 20160236986
    Abstract: Disclosed is a method for providing a crystalline ceramic material. In an example, the method includes providing a silicon-containing preceramic polymer material that can be thermally converted to one or more crystalline polymorphs. The silicon-containing preceramic polymer material includes dispersed therein an effective amount of dopant particles. The silicon-containing preceramic polymer material is then thermally converted to the silicon-containing ceramic material. The effective amount of dopant particles enhance the formation of at least one of the one or more crystalline polymorphs, relative to the silicon-containing preceramic polymer without the dopant particles, with respect to at least one of formation of a selected polymorph of the one or more crystalline polymorphs formed, an amount formed of a selected polymorph of the one or more crystalline polymorphs formed, and a temperature of formation of the one or more crystalline polymorphs.
    Type: Application
    Filed: September 24, 2014
    Publication date: August 18, 2016
    Inventors: Andi Limarga, Paul Sheedy, Wayde R. Schmidt, Douglas M. Berczik, Tania Bhatia Kashyap, Mark A. Hermann