Patents by Inventor Lavonna Suzanne Buehrig

Lavonna Suzanne Buehrig 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: 20040228993
    Abstract: Disclosed is a polyester composition comprising:
    Type: Application
    Filed: June 4, 2004
    Publication date: November 18, 2004
    Inventors: Stephen Weinhold, Lavonna Suzanne Buehrig, Robert Noah Estep, David Paul Fischer
  • Publication number: 20040030029
    Abstract: Disclosed is a polyester composition comprising:
    Type: Application
    Filed: July 3, 2001
    Publication date: February 12, 2004
    Inventors: Stephen Weinhold, Lavonna Suzanne Buehrig, Robert Noah Estep, David Paul Fischer
  • Publication number: 20030152726
    Abstract: Polyester containers having a reduced coefficient of friction (“COF”) are produced by increasing the surface roughness of the polyester using either thermal crystallization or solvent crystallization. Because the low COF reduces or eliminates friction between polyester containers, the containers do not become entangled and disrupt the manufacturing process. As a result, the containers move easily through typical conveying and filling lines in manufacturing processes that use the containers.
    Type: Application
    Filed: June 27, 2002
    Publication date: August 14, 2003
    Inventors: Steven Lee Stafford, Lavonna Suzanne Buehrig, Louis Thomas Germinario, Eric Jon Moskala, David Paul Fischer, Michael Eugene Donelson, Steven Matthew Scheffer, Darrin James Nicholson, Maurice Harold Hodgson, Fabian Clarke Pike, Jeff Erich Neff
  • Publication number: 20030141625
    Abstract: A process for coextrusion-molding a multilayer article comprising coextruding at a selected coextuding temperature (i) a first outer polymer resin layer having a) a viscosity, b) a melting temperature, and c) a degradation temperature at the selected coextuding temperature, and (ii) a second inner polymer resin layer having a) a viscosity, b) a melting temperature, and c) a degradation temperature at the selected coextuding temperature, wherein the ratio of the outer polymer resin viscosity to the inner polymer resin viscosity at the coextuding temperature is less than or equal to about 1 and the coextuding temperature is above the melting temperature of the highest melting resin and below the degradation temperature of the lowest degrading resin to form a multilayer article.
    Type: Application
    Filed: February 21, 2003
    Publication date: July 31, 2003
    Inventors: Marcus David Shelby, Lavonna Suzanne Buehrig, Benjamin Bradford Gamble
  • Patent number: 6562276
    Abstract: A process for coinjection-molding a multilayer article comprising coinjecting at a selected coinjecting temperature (i) a first outer polymer resin layer having a viscosity at the selected coinjecting temperature, and (ii) a second inner polymer resin layer having a viscosity at the selected coinjecting temperature, wherein the ratio of the outer polymer resin viscosity to the inner polymer resin viscosity at the coinjecting temperature is less than or equal to about 2 and the coinjecting temperature is above the melting temperature of the highest melting resin and below the degradation temperature of the lowest degrading resin to form a multilayer article. Processes for coextrusion are also provided.
    Type: Grant
    Filed: March 1, 2000
    Date of Patent: May 13, 2003
    Assignee: Eastman Chemical Company
    Inventors: Marcus David Shelby, Lavonna Suzanne Buehrig, Benjamin Bradford Gamble
  • Publication number: 20030001317
    Abstract: A method for reducing or eliminating plate-out during the process used to produce stretch blow molded containers from polyester preforms by crystallizing the low molecular weight polyester molecules in or on the preform exterior surface before stretch blow molding the preform into a container. The molecules are crystallized using a crystallization process selected from (1) treating the outer surface of the preform with a solvent that is capable of crystallizing low molecular weight polyester molecules in polyester or (2) heating the outer surface of the preform to a temperature and for a time suitable for crystallizing low molecular weight polyester molecules in polyester. Plate-out is reduced because the crystallized molecules do not migrate out of the preform and form plate-out deposits on the mold.
    Type: Application
    Filed: June 27, 2002
    Publication date: January 2, 2003
    Applicant: Eastman Chemical Company
    Inventors: Steven Lee Stafford, Lavonna Suzanne Buehrig, Louis Thomas Germinario, Terrill M. McGee, Gary Wayne Minnick, Eric Jon Moskala, Michael Eugene Donelson
  • Patent number: H2132
    Abstract: Polyester containers having a reduced coefficient of friction (“COF”) are produced by increasing the surface roughness of the polyester using either thermal crystallization or solvent crystallization. Because the low COF reduces or eliminates friction between polyester containers, the containers do not become entangled and disrupt the manufacturing process. As a result, the containers move easily through typical conveying and filling lines in manufacturing processes that use the containers.
    Type: Grant
    Filed: June 27, 2002
    Date of Patent: November 1, 2005
    Assignee: Eastman Chemical Company
    Inventors: Steven Lee Stafford, Lavonna Suzanne Buehrig, Louis Thomas Germinario, Eric Jon Moskala, David Paul Fischer, Michael Eugene Donelson, Steven Matthew Scheffer, Darrin James Nicholson, Maurice Harold Hodgson, Fabian Clarke Pike, Jeff Erich Neff
  • Patent number: H2088
    Abstract: A method for reducing or eliminating plate-out during the process used to produce stretch blow molded containers from polyester preforms by crystallizing the low molecular weight polyester molecules in or on the preform exterior surface before stretch blow molding the preform into a container. The molecules are crystallized using a crystallization process selected from (1) treating the outer surface of the preform with a solvent that is capable of crystallizing low molecular weight polyester molecules in polyester or (2) heating the outer surface of the preform to a temperature and for a time suitable for crystallizing low molecular weight polyester molecules in polyester. Plate-out is reduced because the crystallized molecules do not migrate out of the preform and form plate-out deposits on the mold.
    Type: Grant
    Filed: June 27, 2002
    Date of Patent: November 4, 2003
    Assignee: Eastman Chemical Company
    Inventors: Steven Lee Stafford, Lavonna Suzanne Buehrig, Louis Thomas Germinario, Terrill M. McGee, Gary Wayne Minnick, Eric Jon Moskala, Michael Eugene Donelson