Patents by Inventor Huey Shen Wu

Huey Shen Wu 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: 20120046371
    Abstract: An ionomer and a process for forming the ionomer such that the ionomer has (1) low equivalent weight (below 950, preferably between 625 and 850, and most preferably between 675 and 800) and (2) high conductivity (greater than 0.13 S/cm). In another embodiment, the invention is an ionomer having (1) low equivalent weight (below 950, preferably between 625 and 850, and most preferably between 675 and 800) and (2) acceptably low hydration (less than about 120 weight percent). These ionomers are capable of being processed into thin film and are extremely well-suited for low humidity or high temperature fuel cell applications.
    Type: Application
    Filed: October 28, 2011
    Publication date: February 23, 2012
    Inventors: Huey Shen Wu, Charles W. Martin, Xin Kang Chen
  • Patent number: 8088491
    Abstract: This invention discloses novel fluorochloro ionomers and processes of making them. The first preferred body of invention is perfluorochloro ionomers having (1) equivalent weight between 600 and 1500, preferably between 800 and 1200, and most preferably between 900 and 1100; (2) chlorine content between 8% and 30% by weight. These ionomers are breathable and excellent barrier materials, capable of being processed into thin films or membranes and are well suited for low humidity or high temperature fuel cell applications and for chemical protective covering materials. The second preferred body of invention is partially fluorochloro ionomers having (1) moisture vapor permeability rate>3000 gram H2O/m2/day (about ½ mil thick film); (2) chlorine content of between 10% and 39% by weight.
    Type: Grant
    Filed: August 20, 2007
    Date of Patent: January 3, 2012
    Inventor: Huey-Shen Wu
  • Patent number: 8071702
    Abstract: An ionomer and a process for forming the ionomer such that the ionomer has (1) low equivalent weight (below 950, preferably between 625 and 850, and most preferably between 675 and 800) and (2) high conductivity (greater than 0.13 S/cm). In another embodiment, the invention is an ionomer having (1) low equivalent weight (below 950, preferably between 625 and 850, and most preferably between 675 and 800) and (2) acceptably low hydration (less than about 120 weight percent). These ionomers are capable of being processed into thin film and are extremely well-suited for low humidity or high temperature fuel cell applications.
    Type: Grant
    Filed: June 21, 2006
    Date of Patent: December 6, 2011
    Assignee: Gore Enterprise Holdings, Inc.
    Inventors: Huey Shen Wu, Charles W. Martin, Xin Kang Chen
  • Patent number: 7615307
    Abstract: An ionomer and a process for forming the ionomer such that the ionomer has (1) low equivalent weight (below 950, preferably between 625 and 850, and most preferably between 675 and 800) and (2) high conductivity (greater than 0.13 S/cm). In another embodiment, the invention is an ionomer having (1) low equivalent weight (below 950, preferably between 625 and 850, and most preferably between 675 and 800) and (2) acceptably low hydration (less than about 120 weight percent). These ionomers are capable of being processed into thin film and are extremely well-suited for low humidity or high temperature fuel cell applications.
    Type: Grant
    Filed: June 21, 2006
    Date of Patent: November 10, 2009
    Assignee: Gore Enterprise Holdings, Inc.
    Inventors: Huey Shen Wu, Charles W. Martin, Xin Kang Chen
  • Patent number: 7579102
    Abstract: An ionomer and a process for forming the ionomer such that the ionomer has (1) low equivalent weight (below 950, preferably between 625 and 850, and most preferably between 675 and 800) and (2) high conductivity (greater than 0.13 S/cm). In another embodiment, the invention is an ionomer having (1) low equivalent weight (below 950, preferably between 625 and 850, and most preferably between 675 and 800) and (2) acceptably low hydration (less than about 120 weight percent). These ionomers are capable of being processed into thin film and are extremely well-suited for low humidity or high temperature fuel cell applications.
    Type: Grant
    Filed: June 21, 2006
    Date of Patent: August 25, 2009
    Assignee: Gore Enterprise Holdings, Inc.
    Inventors: Huey Shen Wu, Charles W. Martin, Xin Kang Chen
  • Publication number: 20090053576
    Abstract: This invention discloses novel fluorochloro ionomers and processes of making them. The first preferred body of invention is perfluorochloro ionomers having (1) equivalent weight between 600 and 1500, preferably between 800 and 1200, and most preferably between 900 and 1100; (2) chlorine content between 8% and 30% by weight. These ionomers are breathable and excellent barrier materials, capable of being processed into thin films or membranes and are well suited for low humidity or high temperature fuel cell applications and for chemical protective covering materials. The second preferred body of invention is partially fluorochloro ionomers having (1) moisture vapor permeability rate >3000 gram H2O/m2/day (about ½ mil thick film); (2) chlorine content of between 10% and 39% by weight.
    Type: Application
    Filed: August 20, 2007
    Publication date: February 26, 2009
    Inventor: Huey-Shen Wu
  • Patent number: 7462675
    Abstract: An improved elastomeric material is described comprising an essentially noncross-linkable amorphous copolymer of tetrafluoroethylene (TFE) and perfluoromethyl vinyl ether (PMVE) which is both a thermoplastic and exhibits exceptional mechanical properties. This material is particularly suitable for use in ultra-clean environments, and particularly for use in an implantable device, since it does not contain contaminants that previous thermoset TFE/PMVE copolymers have required. Among the improved properties of the present invention are excellent biocompatibility, high matrix tensile strength, high clarity, high abrasion resistance, high purity, adequate elasticity, and ease of processing due to the thermoplastic, and noncross-linkable structure of the copolymer. The material of the present invention is also a high strength bonding agent particularly suited for bonding porous PTFE to itself or to other porous substances at room or elevated temperatures.
    Type: Grant
    Filed: September 14, 2005
    Date of Patent: December 9, 2008
    Assignee: Gore Enterprise Holdings, Inc.
    Inventors: James W. Chang, Jack Hegenbarth, Jon P Moseley, Huey Shen Wu
  • Publication number: 20080032582
    Abstract: The present invention relates to flexible protective covering, comprising a composite sheet providing high level of both waterproof and moisture vapor permeability. In its first aspect, the composite sheet consists of at least a thin layer of non-woven fabric and at least a thin layer of air-impermeable, non-porous, hydrophilic polymer. In its second aspect, the composite sheet is further impregnated with at least another layer of hydrophilic polymer into the non-woven fabric side. In its third aspect, the composite sheet consists of a thin layer of air-impermeable, non-porous, hydrophilic polymers comprising poly(amic acid) or polyetherpoly(amic acid) or polyetherpolyimide and at least a porous substrate.
    Type: Application
    Filed: August 7, 2006
    Publication date: February 7, 2008
    Inventor: Huey-Shen Wu
  • Patent number: 7094851
    Abstract: An ionomer and a process for forming the ionomer such that the ionomer has (1) low equivalent weight (below 950, preferably between 625 and 850, and most preferably between 675 and 800) and (2) high conductivity (greater than 0.13 S/cm). In another embodiment, the invention is an ionomer having (1) low equivalent weight (below 950, preferably between 625 and 850, and most preferably between 675 and 800) and (2) acceptably low hydration (less than about 120 weight percent). These ionomers are capable of being processed into thin film and are extremely well-suited for low humidity or high temperature fuel cell applications.
    Type: Grant
    Filed: December 6, 2001
    Date of Patent: August 22, 2006
    Assignee: Gore Enterprise Holdings, Inc.
    Inventors: Huey Shen Wu, Charles W. Martin, Xin Kang Chen
  • Patent number: 7049380
    Abstract: An improved elastomeric material is described comprising an essentially noncross-linkable amorphous copolymer of tetrafluoroethylene (TFE) and perfluoromethyl vinyl ether (PMVE) which is both a thermoplastic and exhibits exceptional mechanical properties. This material is particularly suitable for use in ultra-clean environments, and particularly for use in an implantable device, since it does not contain contaminants that previous thermoset TFE/PMVE copolymers have required. Among the improved properties of the present invention are excellent biocompatibility, high matrix tensile strength, high clarity, high abrasion resistance, high purity, adequate elasticity, and ease of processing due to the thermoplastic, and noncross-linkable structure of the copolymer. The material of the present invention is also a high strength bonding agent particularly suited for bonding porous PTFE to itself or to other porous substances at room or elevated temperatures.
    Type: Grant
    Filed: March 4, 2003
    Date of Patent: May 23, 2006
    Assignee: Gore Enterprise Holdings, Inc.
    Inventors: James W. Chang, Jack Hegenbarth, Jon P Moseley, Huey Shen Wu
  • Patent number: 7041409
    Abstract: An ionomer and a process for forming the ionomer such that the ionomer has (1) low equivalent weight; below 950, preferably between 625 and 850, and most preferably between about 700 and about 800; and (2) high conductivity, (greater than 0.15 S/cm). In an alternative embodiment, the ionomer has (1) low equivalent weight; below 950, preferably between 625 and 850, and most preferably between about 700 and about 800; and (2) acceptably low hydration, (less than about 75 weight percent). These ionomers are adapted to be processed into thin films that have acceptable physical stability. They are thus extremely well-suited for low humidity or high temperature fuel cell applications.
    Type: Grant
    Filed: January 20, 2005
    Date of Patent: May 9, 2006
    Assignee: Gore Enterprise Holdings, Inc.
    Inventors: Huey Shen Wu, Charles W. Martin, Xin Kang Chen
  • Patent number: 7022428
    Abstract: An ionomer and a process for forming the ionomer such that the ionomer has (1) low equivalent weight; below 950, preferably between 625 and 850, and most preferably between about 700 and about 800; and (2) high conductivity, (greater than 0.15 S/cm). In an alternative embodiment, the ionomer has (1) low equivalent weight; below 950, preferably between 625 and 850, and most preferably between about 700 and about 800; and (2) acceptably low hydration, (less than about 75 weight percent). These ionomers are adapted to be processed into thin films that have acceptable physical stability. They are thus extremely well-suited for low humidity or high temperature fuel cell applications.
    Type: Grant
    Filed: January 20, 2005
    Date of Patent: April 4, 2006
    Assignee: Gore Enterprise Holdings, Inc.
    Inventors: Huey Shen Wu, Charles W. Martin, Xin Kang Chen
  • Patent number: 6861489
    Abstract: An ionomer and a process for forming the ionomer such that the ionomer has (1) low equivalent weight; below 950, preferably between 625 and 850, and most preferably between about 700 and about 800; and (2) high conductivity, (greater than 0.15 S/cm). In an alternative embodiment, the ionomer has (1) low equivalent weight; below 950, preferably between 625 and 850, and most preferably between about 700 and about 800; and (2) acceptably low hydration, (less than about 75 weight percent). These ionomers are adapted to be processed into thin films that have acceptable physical stability. They are thus extremely well-suited for low humidity or high temperature fuel cell applications.
    Type: Grant
    Filed: December 6, 2001
    Date of Patent: March 1, 2005
    Assignee: Gore Enterprise Holdings, Inc.
    Inventors: Huey Shen Wu, Charles W. Martin, Xin Kang Chen
  • Publication number: 20040259446
    Abstract: The present invention is directed to protective coverings, such as articles of apparel and enclosures, capable of transmitting high amounts of moisture vapor and resisting permeation to noxious chemicals. Preferred chemical protective coverings comprise a fabric laminate comprising at least one layer of apparel fabric and a layer comprising a sulfonated aromatic polymer. The present invention is further directed to a method of reducing exposure of a person to harmful chemicals.
    Type: Application
    Filed: June 20, 2003
    Publication date: December 23, 2004
    Inventors: Mukesh K. Jain, Huey Shen Wu
  • Publication number: 20040152788
    Abstract: Uniform emulsions of fluorinated liquid droplets in water are formed from SPG (Shirasu porous glass) membrane emulsification. The fluorinated oil-in-water emulsions exhibit unusually stability, as the much denser fluorinated liquid droplets do not coalesce at least 3 month after emulsification. A subsequent polymerization of monomer mixtures of the fluorinated droplets yields uniform polymeric microspheres encapsulating the fluorinated fluid. The use of expanded PTFE membrane emulsification forms water-in-oil emulsions with uniform liquid droplets, especially when small amount of fluorinated liquid is present in the oil phase.
    Type: Application
    Filed: January 31, 2003
    Publication date: August 5, 2004
    Inventors: Huey Shen Wu, Takahiro Oga, Shinzo Omi, Naohiro Yamazaki
  • Publication number: 20030153700
    Abstract: An ionomer and a process for forming the ionomer such that the ionomer has (1) low equivalent weight; below 950, preferably between 625 and 850, and most preferably between about 700 and about 800; and (2) high conductivity, (greater than 0.15 S/cm). In an alternative embodiment, the ionomer has (1) low equivalent weight; below 950, preferably between 625 and 850, and most preferably between about 700 and about 800; and (2) acceptably low hydration, (less than about 75 weight percent). These ionomers are adapted to be processed into thin films that have acceptable physical stability. They are thus extremely well-suited for low humidity or high temperature fuel cell applications.
    Type: Application
    Filed: December 6, 2001
    Publication date: August 14, 2003
    Inventors: Huey Shen Wu, Charles W. Martin, Xin Kang Chen
  • Publication number: 20030146148
    Abstract: An ionomer and a process for forming the ionomer such that the ionomer has (1) low equivalent weight (below 950, preferably between 625 and 850, and most preferably between 675 and 800) and (2) high conductivity (greater than 0.13 S/cm). In another embodiment, the invention is an ionomer having (1) low equivalent weight (below 950, preferably between 625 and 850, and most preferably between 675 and 800) and (2) acceptably low hydration (less than about 120 weight percent). These ionomers are capable of being processed into thin film and are extremely well-suited for low humidity or high temperature fuel cell applications.
    Type: Application
    Filed: December 6, 2001
    Publication date: August 7, 2003
    Inventors: Huey Shen Wu, Charles W. Martin, Xin Kang Chen
  • Patent number: 6156839
    Abstract: An aqueous microemulsion polymerization procedure is described in which very small colloidal polymer particles are produced from tetrafluoroethylene monomer. The polymerization procedure involves adding a free-radical initiator to a mixture of a microemulsion of at least one liquid saturated organic compound; and tetrafluoroalkyl ethylene.
    Type: Grant
    Filed: March 16, 1999
    Date of Patent: December 5, 2000
    Assignee: W. L. Gore & Associates, Inc.
    Inventors: Huey Shen Wu, Jack Hegenbarth, Xin Kang Chen, Jian Guo Chen
  • Patent number: 6046271
    Abstract: An aqueous microemulsion polymerization procedure is described in which very small colloidal melt-processible fluoropolymer particles are produced from at least one monomer and optionally TFE. The polymerization procedure involves initiating polymerization by adding a free-radical initiator to a microemulsion of at least one liquid organic compound and at least one free-radical polymerizable monomer to the microemulsion.
    Type: Grant
    Filed: May 27, 1997
    Date of Patent: April 4, 2000
    Assignee: W. L. Gore & Associates, Inc.
    Inventors: Huey Shen Wu, Jack Hegenbarth, Xin Kang Chen, Jian Guo Chen
  • Patent number: 6037399
    Abstract: An aqueous microemulsion polymerization procedure is described in which very small colloidal melt-processible fluoropolymer particles are produced from at least one gaseous monomer and optionally TFE. The polymerization procedure involves forming a microemulsion of at least one liquid organic compound; adding at least one gaseous free-radical polymerizable monomer to the microemulsion; and initiating polymerization by adding a free-radical initiator to the mixture.
    Type: Grant
    Filed: June 28, 1996
    Date of Patent: March 14, 2000
    Assignee: W. L. Gore & Associates, Inc.
    Inventors: Huey Shen Wu, Jack Hegenbarth, Chen Xin-Kang, Chen Jian-Guo