Patents by Inventor Porter Clarke Shannon

Porter Clarke Shannon 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: 9586355
    Abstract: A dynamically vulcanized alloy containing an elastomer and a thermoplastic resin is prepared by a process wherein supercritical fluid is injected into the thermoplastic elastomeric material as the material is mixed in an extruder. The material is mixed under conditions such that the thermoplastic elastomeric material is dynamically vulcanized wherein the elastomer forms a discontinuous dispersed of small particles in a continuous phase of the thermoplastic resin. The DVA material may then be directly formed into film or sheets by the use of at least one set of rolls located adjacent to the extruder outlet.
    Type: Grant
    Filed: March 11, 2011
    Date of Patent: March 7, 2017
    Assignee: ExxonMobil Chemical Patents Inc.
    Inventors: Jianya John Cheng, Prashant Arun Bhadane, Basil D. Favis, Dennis Kumor, Maria Dolores Ellul, Peter William Manders, Porter Clarke Shannon, Dirk Frans Rouckhout
  • Patent number: 8633286
    Abstract: A catalyst composition that includes a support material having an improved particle-size distribution is provided. Processes for producing polyolefin composition also are provided. Polymers and films also are provided. An example of a catalyst composition is a supported multi-transition-metal catalyst composition that includes: (a) at least two catalyst components selected from the group consisting of: a nonmetallocene catalyst component and a metallocene catalyst component; (b) a support material that has a D50 of less than about 30 microns and a particle size distribution having a D90/D10 ratio of less than about 6; and (c) an activator.
    Type: Grant
    Filed: April 4, 2011
    Date of Patent: January 21, 2014
    Assignee: Univation Technologies, LLC
    Inventors: Chi-I Kuo, Tae Hoon Kwalk, Dongming Li, Porter Clarke Shannon
  • Publication number: 20120232210
    Abstract: A dynamically vulcanized alloy containing an elastomer and a thermoplastic resin is prepared by a process wherein supercritical fluid is injected into the thermoplastic elastomeric material as the material is mixed in an extruder. The material is mixed under conditions such that the thermoplastic elastomeric material is dynamically vulcanized wherein the elastomer forms a discontinuous dispersed of small particles in a continuous phase of the thermoplastic resin. The DVA material may then be directly formed into film or sheets by the use of at least one set of rolls located adjacent to the extruder outlet.
    Type: Application
    Filed: March 11, 2011
    Publication date: September 13, 2012
    Inventors: Jianya John CHENG, Prashant Arun BHADANE, Basil D. FAVIS, Dennis KUMOR, Maria Dolores ELLUL, Peter William MANDERS, Porter Clarke SHANNON, Dirk Frans ROUCKHOUT
  • Publication number: 20110184132
    Abstract: A catalyst composition that includes a support material having an improved particle-size distribution is provided. Processes for producing polyolefin composition also are provided. Polymers and films also are provided. An example of a catalyst composition is a supported multi-transition-metal catalyst composition that includes: (a) at least two catalyst components selected from the group consisting of: a nonmetallocene catalyst component and a metallocene catalyst component; (b) a support material that has a D50 of less than about 30 microns and a particle size distribution having a D90/D10 ratio of less than about 6; and (c) an activator.
    Type: Application
    Filed: April 4, 2011
    Publication date: July 28, 2011
    Applicant: UNIVATION TECHNOLOGIES, LLC
    Inventors: Chi-I Kuo, Tae Hoon Kwalk, Dongming Li, Porter Clarke Shannon
  • Publication number: 20090258995
    Abstract: Articles such as, for example, pipes or bottles, prepared from multimodal polyethylenes possessing a density from 0.940 to 0.965 g/cm3, and an I21 from 4 to 20 dg/min, and comprising a low molecular weight ethylene copolymer having a weight average molecular weight from 5,000 amu to 50,000 amu; and a high molecular weight ethylene copolymer having a weight average molecular weight from 60,000 amu to 800,000 amu, both components having a desirable balance of short chain branching making the multimodal polyethylene suitable for films, pipes, rotomolding applications and blow molding applications.
    Type: Application
    Filed: June 24, 2009
    Publication date: October 15, 2009
    Applicant: UNIVATION TECHNOLOGIES, LLC
    Inventors: Porter Clarke Shannon, Fred D. Ehrman
  • Patent number: 7595364
    Abstract: Multimodal polyethylenes possessing a density from 0.940 to 0.965 g/cm3, and an I21 from 4 to 20 dg/min, and comprising a low molecular weight ethylene copolymer having a weight average molecular weight from 5,000 amu to 50,000 amu; and a high molecular weight ethylene copolymer having a weight average molecular weight from 60,000 amu to 800,000 amu, both components having a desirable balance of short chain branching making the multimodal polyethylene suitable for films, pipes, rotomolding applications and blow molding applications.
    Type: Grant
    Filed: December 7, 2005
    Date of Patent: September 29, 2009
    Assignee: Univation Technologies, LLC
    Inventors: Porter Clarke Shannon, Fred D. Ehrman
  • Publication number: 20040044154
    Abstract: A process of producing a bimodal polyolefin composition is described, which includes in one embodiment contacting monomers with a supported bimetallic catalyst composition for a time sufficient to form a bimodal polyolefin composition that includes a high molecular weight polyolefin component and a low molecular weight polyolefin component; wherein the supported bimetallic catalyst includes a first catalyst component that is preferably non-metallocene, and a second catalyst component that includes a metallocene catalyst compound having at least one fluoride or fluorine containing leaving group, wherein the bimetallic catalyst is supported by an enhanced silica, dehydrated at a temperature of 800° C. or more in one embodiment.
    Type: Application
    Filed: February 18, 2003
    Publication date: March 4, 2004
    Inventors: Chi-I Kuo, G. McCullough Laughlin, Pradeep Pandurang Shirodkar, Fred David Ehrman, Porter Clarke Shannon, Robert Lynn Santana, Steven K. Ackerman, Daniel Gerard O'Neil