Patents by Inventor Christina A. Rhoton

Christina A. Rhoton 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: 10793665
    Abstract: A formulation system contains: (a) a pre-polymer reaction product of a polymeric isocyanate and a polyether polyol, where: (i) the polymeric isocyanate contains five weight-percent or more methylene diphenyl diisocyanate; (ii) the polymeric isocyanate has a functionality of 3.0 or less; (iii) the polyether polyol is present in the pre-polymer at a concentration of one to 25 weight-percent; (iv) the polyol has an equivalent weight of 50 to 500 grams per equivalent; (v) the ?NCO concentration of the pre-polymer is 15 to 31 weight-percent; (vi) the pre-polymer is free of isocyanate trimers; (b) a polyester polyol component containing 10 to 25 weight-percent of free glycol; and (c) a blowing agent that contains less than five weight-percent water; where the ratio of pre-polymer and polyester result in foam having a trimer content of 12 to 22 weight-percent, and an ?NCO index of more than 300 and less than 700.
    Type: Grant
    Filed: December 19, 2019
    Date of Patent: October 6, 2020
    Assignee: DDP SPECIALTY ELECTRONIC MATERIALS US, INC.
    Inventors: Kshitish A. Patankar, Mark F. Sonnenschein, Steven P. Crain, Christina A. Rhoton
  • Publication number: 20200123305
    Abstract: A formulation system contains: (a) a pre-polymer reaction product of a polymeric isocyanate and a polyether polyol, where: (i) the polymeric isocyanate contains five weight-percent or more methylene diphenyl diisocyanate; (ii) the polymeric isocyanate has a functionality of 3.0 or less; (iii) the polyether polyol is present in the pre-polymer at a concentration of one to 25 weight-percent; (iv) the polyol has an equivalent weight of 50 to 500 grams per equivalent; (v) the —NCO concentration of the pre-polymer is 15 to 31 weight-percent; (vi) the pre-polymer is free of isocyanate trimers; (b) a polyester polyol component containing 10 to 25 weight-percent of free glycol; and (c) a blowing agent that contains less than five weight-percent water; where the ratio of pre-polymer and polyester result in foam having a trimer content of 12 to 22 weight-percent, and an —NCO index of more than 300 and less than 700.
    Type: Application
    Filed: December 19, 2019
    Publication date: April 23, 2020
    Inventors: Kshitish A. Patankar, Mark F. Sonnenschein, Steven P. Crain, Christina A. Rhoton
  • Patent number: 10577454
    Abstract: A formulation system contains: (a) a pre-polymer reaction product of a polymeric isocyanate and a polyether polyol, where: (i) the polymeric isocyanate contains five weight-percent or more methylene diphenyl diisocyanate; (ii) the polymeric isocyanate has a functionality of 3.0 or less; (iii) the polyether polyol is present in the pre-polymer at a concentration of one to 25 weight-percent; (iv) the polyol has an equivalent weight of 50 to 500 grams per equivalent; (v) the —NCO concentration of the pre-polymer is 15 to 31 weight-percent; (vi) the pre-polymer is free of isocyanate trimers; (b) a polyester polyol component containing 10 to 25 weight-percent of free glycol; and (c) a blowing agent that contains less than five weight-percent water; where the ratio of pre-polymer and polyester result in foam having a trimer content of 12 to 22 weight-percent, and an —NCO index of more than 300 and less than 700.
    Type: Grant
    Filed: October 19, 2016
    Date of Patent: March 3, 2020
    Inventors: Kshitish A. Patankar, Mark F. Sonnenschein, Steven P. Crain, Christina A. Rhoton
  • Publication number: 20180244833
    Abstract: A formulation system contains: (a) a pre-polymer reaction product of a polymeric isocyanate and a polyether polyol, where: (i) the polymeric isocyanate contains five weight-percent or more methylene diphenyl diisocyanate; (ii) the polymeric isocyanate has a functionality of 3.0 or less; (iii) the polyether polyol is present in the pre-polymer at a concentration of one to 25 weight-percent; (iv) the polyol has an equivalent weight of 50 to 500 grams per equivalent; (v) the —NCO concentration of the pre-polymer is 15 to 31 weight-percent; (vi) the pre-polymer is free of isocyanate trimers; (b) a polyester polyol component containing 10 to 25 weight-percent of free glycol; and (c) a blowing agent that contains less than five weight-percent water; where the ratio of pre-polymer and polyester result in foam having a trimer content of 12 to 22 weight-percent, and an —NCO index of more than 300 and less than 700.
    Type: Application
    Filed: October 19, 2016
    Publication date: August 30, 2018
    Inventors: Kshitish A. Patankar, Mark F. Sonnenschein, Steven P. Crain, Christina A. Rhoton
  • Patent number: 9222201
    Abstract: Disclosed here are processes for preparing carbonized polymers (preferably carbon fibers), comprising sulfonating a polymer with a sulfonating agent that comprises SO3 dissolved in a solvent to form a sulfonated polymer; treating the sulfonated polymer with a heated solvent, wherein the temperature of the solvent is at least 95° C.; and carbonizing the resulting product by heating it to a temperature of 500-3000° C. Carbon fibers made according to these methods are also disclosed herein.
    Type: Grant
    Filed: July 3, 2013
    Date of Patent: December 29, 2015
    Assignee: Dow Global Technologies LLC
    Inventors: Jasson T. Patton, Bryan E. Barton, Mark T. Bernius, Xiaoyun Chen, Eric J. Hukkanen, Christina A. Rhoton, Zenon Lysenko
  • Publication number: 20150197878
    Abstract: Disclosed here are processes for preparing carbonized polymers (preferably carbon fibers), comprising sulfonating a polymer with a sulfonating agent that comprises SO3 dissolved in a solvent to form a sulfonated polymer; treating the sulfonated polymer with a heated solvent, wherein the temperature of the solvent is at least 95° C.; and carbonizing the resulting product by heating it to a temperature of 500-3000° C. Carbon fibers made according to these methods are also disclosed herein.
    Type: Application
    Filed: July 3, 2013
    Publication date: July 16, 2015
    Inventors: Jasson T. Patton, Bryan E. Barton, Mark T. Bernius, Xiaoyun Chen, Eric J. Hukkanen, Christina A. Rhoton, Zenon Lysenko
  • Publication number: 20100255216
    Abstract: The invention relates to a process and apparatus for atmospheric pressure plasma enhanced chemical vapor deposition coating using a first electrode (33) and a second electrode (34). The second electrode is positioned apart from the first electrode thereby defining a volume space (42) between the first and second electrodes which volume space is covered by a duct sealed to the electrodes. Gas is flowed from the volume space between the first and second electrodes at the same or at a greater flow rate than the sum of gaseous coating precursor mixtures flowed to the first and second electrodes. In addition, the invention relates to an improved electrode assembly for use in an atmospheric pressure plasma enhanced chemical vapor deposition coating system. The electrode assembly includes a means for distributing a gaseous coating precursor mixture to emerge from an electrode assembly. The improvement relates to a gas distributing subassembly of the electrode assembly.
    Type: Application
    Filed: October 27, 2008
    Publication date: October 7, 2010
    Inventors: Robert P. Haley, JR., Christina A. Rhoton, Alphonsus J.P. De Rijcke, Mark G.C. Vreys
  • Publication number: 20100129646
    Abstract: A coated object, wherein at least a portion of the surface of the object is an amide containing polymer wherein at least a portion of a surface of the amide containing polymer has a plasma enhanced chemical vapor deposition exposed coating thereon. A method for making a coated object, wherein at least a portion of the surface of the object comprises an amide containing polymer, by the step of coating at least a portion of a surface of the polymer containing an amide group by a plasma enhanced chemical vapor deposition coating process to form a plasma enhanced chemical vapor deposition exposed coating thereon.
    Type: Application
    Filed: May 19, 2008
    Publication date: May 27, 2010
    Inventors: Thomas E. Fisk, John M. Warakomski, Christina A. Rhoton, Mark G.C. Vreys, Ludo M. Aerts
  • Publication number: 20090142511
    Abstract: Process and apparatus for atmospheric pressure plasma enhanced chemical vapor deposition coating using a first and second electrode, the second electrode being positioned apart from the first electrode thereby creating a volume space between the first and second electrodes which volume space is covered by a duct sealed to the electrodes. Gas is flowed from the volume space between the first and second electrodes at the same or at a greater rate than the sum of the gaseous coating precursor mixtures of the first and second electrodes. In addition, an improved electrode assembly for use in an atmospheric pressure plasma enhanced chemical vapor deposition coating system that includes a means for distributing a gaseous coating precursor mixture to emerge from an electrode assembly. The improvement relates to a gas distributing subassembly of the electrode assembly.
    Type: Application
    Filed: November 29, 2007
    Publication date: June 4, 2009
    Inventors: Robert P. Haley, JR., Christina A. Rhoton, Alphonsus J. P. De Rijcke, Mark G. C. Vreys