Patents by Inventor Judith E. Hodgson

Judith E. Hodgson 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: 10125748
    Abstract: A thermal actuator for a rotating shaft shutdown seal that has a piston with a portion of its axial length enclosed within a chamber shell with a material that expands upon a rise in temperature. The portion of the actual length of the piston within the chamber has at least two different diameters with the larger diameter leading in the direction of travel of the piston. Upon a rise in temperature, expansion of the material surrounding the piston within the chamber creates a force on the piston in the desired direction of travel. Below a preselected temperature the piston is positively locked with a passive release when the preselected temperature is reached.
    Type: Grant
    Filed: May 4, 2017
    Date of Patent: November 13, 2018
    Assignee: Westinghouse Electric Company LLC
    Inventors: Phillip J. Hawkins, Judith E. Hodgson
  • Publication number: 20170234305
    Abstract: A thermal actuator for a rotating shaft shutdown seal that has a piston with a portion of its axial length enclosed within a chamber shell with a material that expands upon a rise in temperature. The portion of the actual length of the piston within the chamber has at least two different diameters with the larger diameter leading in the direction of travel of the piston. Upon a rise in temperature, expansion of the material surrounding the piston within the chamber creates a force on the piston in the desired direction of travel. Below a preselected temperature the piston is positively locked with a passive release when the preselected temperature is reached.
    Type: Application
    Filed: May 4, 2017
    Publication date: August 17, 2017
    Applicant: Westinghouse Electric Company LLC
    Inventors: PHILLIP J. HAWKINS, Judith E. Hodgson
  • Patent number: 9714644
    Abstract: A thermal actuator for a rotating shaft shutdown seal that has a piston with a portion of its axial length enclosed within a chamber shell with a material that expands upon a rise in temperature. The portion of the actual length of the piston within the chamber has at least two different diameters with the larger diameter leading in the direction of travel of the piston. Upon a rise in temperature, expansion of the material surrounding the piston within the chamber creates a force on the piston in the desired direction of travel. Below a preselected temperature the piston is positively locked with a passive release when the preselected temperature is reached.
    Type: Grant
    Filed: October 19, 2015
    Date of Patent: July 25, 2017
    Assignee: Westinghouse Electric Company LLC
    Inventors: Phillip J. Hawkins, Judith E. Hodgson, John W. Conrad, Lyman J. Petrosky
  • Publication number: 20160123310
    Abstract: A thermal actuator for a rotating shaft shutdown seal that has a piston with a portion of its axial length enclosed within a chamber shell with a material that expands upon a rise in temperature. The portion of the actual length of the piston within the chamber has at least two different diameters with the larger diameter leading in the direction of travel of the piston. Upon a rise in temperature, expansion of the material surrounding the piston within the chamber creates a force on the piston in the desired direction of travel. Below a preselected temperature the piston is positively locked with a passive release when the preselected temperature is reached.
    Type: Application
    Filed: October 19, 2015
    Publication date: May 5, 2016
    Applicant: WESTINGHOUSE ELECTRIC COMPANY LLC
    Inventors: Phillip J. Hawkins, Judith E. Hodgson, John W. Conrad, Lyman J. Petrosky
  • Publication number: 20160040681
    Abstract: A thermal actuator for a rotating shaft shutdown seal that has a piston with a portion of its axial length enclosed within a chamber shell with a material that expands upon a rise in temperature. The portion of the actual length of the piston within the chamber has at least two different diameters with the larger diameter leading in the direction of travel of the piston. Upon a rise in temperature, expansion of the material surrounding the piston within the chamber creates a force on the piston in the desired direction of travel. Below a preselected temperature the piston is positively locked with a passive release when the preselected temperature is reached.
    Type: Application
    Filed: September 28, 2015
    Publication date: February 11, 2016
    Applicant: WESTINGHOUSE ELECTRIC COMPANY LLC
    Inventors: Phillip J. Hawkins, Judith E. Hodgson
  • Patent number: 9206791
    Abstract: A thermal actuator for a rotating shaft shutdown seal that has a piston with a portion of its axial length enclosed within a chamber shell with a material that expands upon a rise in temperature. The portion of the actual length of the piston within the chamber has at least two different diameters with the larger diameter leading in the direction of travel of the piston. Upon a rise in temperature, expansion of the material surrounding the piston within the chamber creates a force on the piston in the desired direction of travel.
    Type: Grant
    Filed: March 13, 2013
    Date of Patent: December 8, 2015
    Assignee: Westinghouse Electric Company LLC
    Inventors: Phillip J. Hawkins, Judith E. Hodgson
  • Patent number: 9206812
    Abstract: A thermal actuator for a rotating shaft shutdown seal that has a piston with a portion of its axial length enclosed within a chamber shell with a material that expands upon a rise in temperature. The portion of the actual length of the piston within the chamber has at least two different diameters with the larger diameter leading in the direction of travel of the piston. Upon a rise in temperature, expansion of the material surrounding the piston within the chamber creates a force on the piston in the desired direction of travel. Below a preselected temperature the piston is positively locked with a passive release when the preselected temperature is reached.
    Type: Grant
    Filed: August 20, 2013
    Date of Patent: December 8, 2015
    Assignee: Westinghouse Electric Company LLC
    Inventors: Phillip J. Hawkins, Judith E. Hodgson
  • Publication number: 20140271288
    Abstract: A thermal actuator for a rotating shaft shutdown seal that has a piston with a portion of its axial length enclosed within a chamber shell with a material that expands upon a rise in temperature. The portion of the actual length of the piston within the chamber has at least two different diameters with the larger diameter leading in the direction of travel of the piston. Upon a rise in temperature, expansion of the material surrounding the piston within the chamber creates a force on the piston in the desired direction of travel. Below a preselected temperature the piston is positively locked with a passive release when the preselected temperature is reached.
    Type: Application
    Filed: August 20, 2013
    Publication date: September 18, 2014
    Applicant: WESTINGHOUSE ELECTRIC COMPANY LLC
    Inventors: Phillip J. Hawkins, Judith E. Hodgson
  • Publication number: 20140271294
    Abstract: A thermal actuator for a rotating shaft shutdown seal that has a piston with a portion of its axial length enclosed within a chamber shell with a material that expands upon a rise in temperature. The portion of the actual length of the piston within the chamber has at least two different diameters with the larger diameter leading in the direction of travel of the piston. Upon a rise in temperature, expansion of the material surrounding the piston within the chamber creates a force on the piston in the desired direction of travel.
    Type: Application
    Filed: March 13, 2013
    Publication date: September 18, 2014
    Applicant: Westinghouse Electric Company LLC
    Inventors: Phillip J. Hawkins, Judith E. Hodgson
  • Publication number: 20020146509
    Abstract: The present invention relates to a process for producing substantially rounded thermosetting or thermoplastic polymer particles and also to a device used therefor. The process includes forming a mixture of polymer pellets with at least one surfactant in an aqueous medium, rapidly melting the polymer pellets under plug flow and plug free heating conditions, shearing the melted pellets into the polymer particles, and rapidly cooling the polymer particles under plug free cooling conditions. Thermosetting particles can include a blend of thermosetting polymers and crosslinking agents. The device provides for plug free conditions to ensure high production rates with substantially no clogging in the polymer conveying and polymer shearing means used in the device. The plug flow conditions ensure more uniform and predictable shearing conditions, since the polymer pellets under the plug flow condition results in substantially no pellet to pellet variation in the pellet temperature.
    Type: Application
    Filed: December 18, 2001
    Publication date: October 10, 2002
    Inventors: George K. Kodokian, Keisha M. Wilson, David L. Brinton, Judith E. Hodgson, James K. Odle, Samuel D. Arthur
  • Patent number: 5598694
    Abstract: An apparatus for making alternate S and Z twist plied yarn from individual singles yarns. The apparatus twists the singles yarns as they move in a path through the process, twisting the individual yarns in either an S or Z direction. The bonding of the ply-twisted yarns at a node while applying twist forms a bond characterized by a dense region of filaments adhesively joined together where one of the strands overlaps another strand, followed by a less dense region along the one strand where fewer filaments are adhesively joined, followed by another dense region.
    Type: Grant
    Filed: May 23, 1995
    Date of Patent: February 4, 1997
    Assignee: E. I. Du Pont de Nemours and Company
    Inventors: Donald W. Edwards, Judith E. Hodgson, Steven K. Shibata, Harold F. Staunton, Robert E. Taylor, Paul W. Yngve