Patents by Inventor Patrick Jacob Mobers

Patrick Jacob Mobers 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: 11746214
    Abstract: A lightweight ablator formulation has been developed which offers superior thermal performance compared to current state of the art ablator formulations. The lightweight ablator formulations described herein typically include at least one endothermically decomposing (energy absorbing) material with a fluxing agent resulting in significantly reduced backface temperature response and a more stable surface. According to one implementation the ablator composition comprises about 30 to about 70 percent by weight of a base silicone resin, about 25 to about 67 percent by weight of a low-density filler, about 3 to about 7 percent by weight of a curing agent and greater than 0 and up to about 10 percent by weight of a boron-containing compound.
    Type: Grant
    Filed: April 15, 2021
    Date of Patent: September 5, 2023
    Assignee: THE BOEING COMPANY
    Inventors: Kelly Jonathan Courter, Patrick Jacob Mobers, Bryan Brewer
  • Publication number: 20210395489
    Abstract: A lightweight ablator formulation has been developed which offers superior thermal performance compared to current state of the art ablator formulations. The lightweight ablator formulations described herein typically include at least one endothermically decomposing (energy absorbing) material with a fluxing agent resulting in significantly reduced backface temperature response and a more stable surface. According to one implementation the ablator composition comprises about 30 to about 70 percent by weight of a base silicone resin, about 25 to about 67 percent by weight of a low-density filler, about 3 to about 7 percent by weight of a curing agent and greater than 0 and up to about 10 percent by weight of a boron-containing compound.
    Type: Application
    Filed: April 15, 2021
    Publication date: December 23, 2021
    Inventors: Kelly Jonathan COURTER, Patrick Jacob Mobers, Bryan Brewer
  • Patent number: 11174370
    Abstract: A lightweight ablator formulation has been developed which offers superior thermal performance compared to current state of the art ablator formulations. The lightweight ablator formulations described herein typically include at least one endothermically decomposing (energy absorbing) material with a fluxing agent resulting in significantly reduced backface temperature response and a more stable surface. According to one implementation the ablator composition comprises about 30 to about 70 percent by weight of a base silicone resin, about 25 to about 67 percent by weight of a low-density filler, about 3 to about 7 percent by weight of a curing agent and greater than 0 and up to about 10 percent by weight of a boron-containing compound.
    Type: Grant
    Filed: April 17, 2019
    Date of Patent: November 16, 2021
    Assignee: THE BOEING COMPANY
    Inventors: Kelly Jonathan Courter, Patrick Jacob Mobers, Bryan Brewer
  • Publication number: 20190241718
    Abstract: A lightweight ablator formulation has been developed which offers superior thermal performance compared to current state of the art ablator formulations. The lightweight ablator formulations described herein typically include at least one endothermically decomposing (energy absorbing) material with a fluxing agent resulting in significantly reduced backface temperature response and a more stable surface. According to one implementation the ablator composition comprises about 30 to about 70 percent by weight of a base silicone resin, about 25 to about 67 percent by weight of a low-density filler, about 3 to about 7 percent by weight of a curing agent and greater than 0 and up to about 10 percent by weight of a boron-containing compound.
    Type: Application
    Filed: April 17, 2019
    Publication date: August 8, 2019
    Inventors: Kelly Jonathan COURTER, Patrick Jacob MOBERS, Bryan BREWER
  • Patent number: 10308789
    Abstract: A lightweight ablator formulation has been developed which offers superior thermal performance compared to current state of the art ablator formulations. The lightweight ablator formulations described herein typically include at least one endothermically decomposing (energy absorbing) material with a fluxing agent resulting in significantly reduced backface temperature response and a more stable surface. According to one implementation the ablator composition comprises about 30 to about 70 percent by weight of a base silicone resin, about 25 to about 67 percent by weight of a low-density filler, about 3 to about 7 percent by weight of a curing agent and greater than 0 and up to about 10 percent by weight of a boron-containing compound.
    Type: Grant
    Filed: September 1, 2016
    Date of Patent: June 4, 2019
    Assignee: THE BOEING COMPANY
    Inventors: Kelly Jonathan Courter, Patrick Jacob Mobers, Bryan Brewer
  • Patent number: 10279931
    Abstract: A method of forming a thermal protection system for high speed aircraft is described. The method includes mechanically working an uncured ablator material into a first surface of a felt layer such that the ablator material penetrates a distance into a thickness of the felt layer thereby forming an region that has a mixture of felt and ablator material, adding additional uncured ablator material to the worked ablator material, and curing the combined ablator material.
    Type: Grant
    Filed: January 22, 2016
    Date of Patent: May 7, 2019
    Assignee: The Boeing Company
    Inventors: Bryan Clark Brewer, Patrick Jacob Mobers
  • Publication number: 20160369089
    Abstract: A lightweight ablator formulation has been developed which offers superior thermal performance compared to current state of the art ablator formulations. The lightweight ablator formulations described herein typically include at least one endothermically decomposing (energy absorbing) material with a fluxing agent resulting in significantly reduced backface temperature response and a more stable surface. According to one implementation the ablator composition comprises about 30 to about 70 percent by weight of a base silicone resin, about 25 to about 67 percent by weight of a low-density filler, about 3 to about 7 percent by weight of a curing agent and greater than 0 and up to about 10 percent by weight of a boron-containing compound.
    Type: Application
    Filed: September 1, 2016
    Publication date: December 22, 2016
    Inventors: Kelly Jonathan COURTER, Patrick Jacob MOBERS, Bryan BREWER
  • Publication number: 20160325857
    Abstract: A method of forming a thermal protection system for high speed aircraft is described. The method includes mechanically working an uncured ablator material into a first surface of a felt layer such that the ablator material penetrates a distance into a thickness of the felt layer thereby forming an region that has a mixture of felt and ablator material, adding additional uncured ablator material to the worked ablator material, and curing the combined ablator material.
    Type: Application
    Filed: January 22, 2016
    Publication date: November 10, 2016
    Inventors: Bryan Clark Brewer, Patrick Jacob Mobers
  • Patent number: 9458356
    Abstract: A lightweight ablator formulation has been developed which offers superior thermal performance compared to current state of the art ablator formulations. The lightweight ablator formulations described herein typically include at least one endothermically decomposing (energy absorbing) material with a fluxing agent resulting in significantly reduced backface temperature response and a more stable surface. According to one implementation the ablator composition comprises about 30 to about 70 percent by weight of a base silicone resin, about 25 to about 67 percent by weight of a low-density filler, about 3 to about 7 percent by weight of a curing agent and greater than 0 and up to about 10 percent by weight of a boron-containing compound.
    Type: Grant
    Filed: June 27, 2014
    Date of Patent: October 4, 2016
    Assignee: THE BOEING COMPANY
    Inventors: Kelly Jonathan Courter, Patrick Jacob Mobers, Bryan Brewer
  • Patent number: 9283711
    Abstract: A method of forming a thermal protection system for high speed aircraft is described. The method includes mechanically working an uncured ablator material into a first surface of a felt layer such that the ablator material penetrates a distance into a thickness of the felt layer thereby forming an region that has a mixture of felt and ablator material, adding additional uncured ablator material to the worked ablator material, and curing the combined ablator material.
    Type: Grant
    Filed: August 31, 2009
    Date of Patent: March 15, 2016
    Assignee: The Boeing Company
    Inventors: Bryan Clark Brewer, Patrick Jacob Mobers
  • Publication number: 20150376452
    Abstract: A lightweight ablator formulation has been developed which offers superior thermal performance compared to current state of the art ablator formulations. The lightweight ablator formulations described herein typically include at least one endothermically decomposing (energy absorbing) material with a fluxing agent resulting in significantly reduced backface temperature response and a more stable surface. According to one implementation the ablator composition comprises about 30 to about 70 percent by weight of a base silicone resin, about 25 to about 67 percent by weight of a low-density filler, about 3 to about 7 percent by weight of a curing agent and greater than 0 and up to about 10 percent by weight of a boron-containing compound.
    Type: Application
    Filed: June 27, 2014
    Publication date: December 31, 2015
    Inventors: Kelly Jonathan Courter, Patrick Jacob Mobers