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Corinne C Bushelman

age ~57

from Cumming, GA

Also known as:
  • Corinne C Bushleman
  • Corin Bushelman

Corinne Bushelman Phones & Addresses

  • Cumming, GA
  • Alpharetta, GA

Work

  • Company:
    Solvay
    Sep 2001
  • Position:
    Senior researcht scientist

Education

  • Degree:
    Doctorates, Doctor of Philosophy
  • Specialities:
    Materials Science, Philosophy

Skills

Polymers • Plastics • Polymer Science • Extrusion • Polymer Chemistry • Coatings • Polymer Characterization • Thermoplastics • R&D • Chemistry • Materials Science • Rheology • Product Development • Chemical Engineering • Composites • Additives • Tga • Materials • Manufacturing • Adhesives • Differential Scanning Calorimetry • Nanomaterials • Characterization • Nanotechnology • Design of Experiments • Polymer Physics • Ftir • Thermal Analysis • Injection Molding • Organic Chemistry • Organic Synthesis • Resin • Formulation

Languages

English • French

Interests

Cooking • Exercise • Cruises • Traveling • Outdoors • Electronics • Home Improvement • Reading • Gourmet Cooking • Music • Travel • Movies • Home Decoration

Industries

Plastics

Resumes

Corinne Bushelman Photo 1

Senior Researcht Scientist

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Location:
1355 Skymist Way, Cumming, GA 30040
Industry:
Plastics
Work:
Solvay
Senior Researcht Scientist

Université Des Sciences Et Technologies De Lille 1999 - 2000
Postdoctoral Research Fellow

Department of Polymer Science & Engineering University of Massachusetts 1998 - 1999
Postdoctoral Research Fellow

Université Des Sciences Et Technologies De Lille 1992 - 1996
Graduate Research Assistant
Education:
Polytech'lille 1989 - 1992
Skills:
Polymers
Plastics
Polymer Science
Extrusion
Polymer Chemistry
Coatings
Polymer Characterization
Thermoplastics
R&D
Chemistry
Materials Science
Rheology
Product Development
Chemical Engineering
Composites
Additives
Tga
Materials
Manufacturing
Adhesives
Differential Scanning Calorimetry
Nanomaterials
Characterization
Nanotechnology
Design of Experiments
Polymer Physics
Ftir
Thermal Analysis
Injection Molding
Organic Chemistry
Organic Synthesis
Resin
Formulation
Interests:
Cooking
Exercise
Cruises
Traveling
Outdoors
Electronics
Home Improvement
Reading
Gourmet Cooking
Music
Travel
Movies
Home Decoration
Languages:
English
French

Us Patents

  • Impact-Modified Polyamide Film

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  • US Patent:
    7811671, Oct 12, 2010
  • Filed:
    Aug 17, 2004
  • Appl. No.:
    10/568612
  • Inventors:
    Corinne Bushelman - Cumming GA, US
    Gregory Warkoski - Cumming GA, US
    James K. Doty - Alpharetta GA, US
    Bruce H. Bersted - Cumming GA, US
  • Assignee:
    Solvay Advanced Polymers, L.L.C. - Alpharetta GA
  • International Classification:
    B32B 27/34
    B32B 27/06
  • US Classification:
    4284744
  • Abstract:
    Films made from impact-modified polyamide.
  • Multilayer Polymer Structure

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  • US Patent:
    7960014, Jun 14, 2011
  • Filed:
    Nov 23, 2005
  • Appl. No.:
    11/720128
  • Inventors:
    Corinne Bushelman - Cumming GA, US
    James K. Doty - Alpharetta GA, US
    Jean De Canniere - Brussels, BE
    Johan Billiet - Ghent, BE
  • Assignee:
    Solvay Advanced Polymers, L.L.C. - Alpharetta GA
  • International Classification:
    B29C 47/06
    B32B 7/02
    B32B 27/08
    B32B 27/30
    B32B 27/34
  • US Classification:
    428212, 428421, 4284744, 15624411
  • Abstract:
    Multilayer Polymer Structure Multilayer structure comprising at least one couple (L1-L2) of adjacent layers (L1) and (L2), wherein layer (L1) comprises at least one polymer composition (C1) comprising a grafted fluoropolymer material (M1) consisting of N1 grafted fluoropolymer(s) (P1), said polymer(s) (P1) obtained by a process comprising grafting onto an ungrafted fluoropolymer (U1) at least one grafting agent (G1) chosen from ethylenically unsaturated carboxy acids, their esters, their anhydrides and their salts, layer (L2) comprises at least one polymer composition (C2) comprising at least one impact modifier (I2) and a semi-crystalline aromatic polyamide material (M2) consisting of N2 semi-crystalline aromatic polyamide polymer(s) (P2), and the average melting temperature (T) of material (M1) differs by at most 45 C. from the average melting temperature (T) of material (M2), Nbeing the number of polymer(s) (Pj) of material (Mj), Nj>1, Tbeing equal to formula (T) wbeing the weight amount of the ipolymer (Pj) of material (Mj), Tbeing the melting temperature of the ipolymer (Pj) of material (Mj), Wbeing the total weight amount of material (Mj), for j=1 and for j=2. Process for manufacturing the above multilayer structure, which comprises co-extruding polymer compositions (C1) and (C2), so as to obtain couple (L1-L2) of adjacent layers (T1) and (T2).
  • Method For Making A Polyamide Hollow Body

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  • US Patent:
    8057732, Nov 15, 2011
  • Filed:
    Aug 3, 2010
  • Appl. No.:
    12/849039
  • Inventors:
    Bruce H. Bersted - Cumming GA, US
    James K. Doty - Alpharetta GA, US
    Jean De Canniere - Brussels, BE
    Claude Dehennau - Waterloo, BE
    Gregory Warkoski - Cumming GA, US
    Corinne Bushelman - Cumming GA, US
    Johan Billiet - Ghent, BE
  • Assignee:
    Solvay Advanced Polymers, L.L.C. - Alpharetta GA
  • International Classification:
    B29C 45/00
    B29C 47/00
    B32B 37/00
  • US Classification:
    264514, 264464, 26417714
  • Abstract:
    Method for making a hollow body comprising, as sole layer(s), at least one layer L1 consisting of a polyamide composition comprising an aromatic polyamide and an impact modifier, said method comprising extruding the polyamide composition through a die.
  • Thermally Conductive Liquid Crystalline Polymer Compositions And Articles Formed Therefrom

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  • US Patent:
    20060014876, Jan 19, 2006
  • Filed:
    Sep 3, 2003
  • Appl. No.:
    10/526231
  • Inventors:
    Corinne Bushelman - Alpharetta GA, US
    Christie Crowe - Alpharetta GA, US
  • International Classification:
    C08K 3/08
  • US Classification:
    524439000
  • Abstract:
    This invention relates to thermally conductive liquid crystalline polymer compositions. The composition is comprised of a liquid crystalline polymer and metal particles. At least about 90% by weight of the metal particles have an average particle size larger than 200 μm. In other embodiments of the invention, the average particle size of the metal particles is larger than 420 μm. Aluminum flakes are exemplary metal particles for use in this invention. The thermally conductive liquid crystalline polymer composition is useful for the manufacture of cookware and has sufficient thermal conductivity to provide browning during cooking. The composition is useful for the manufacture of oven cookware such as cooking pans, sheets, trays, dishes, casseroles, and the like.
  • Impact Modified Polyamide Compositions

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  • US Patent:
    20070213475, Sep 13, 2007
  • Filed:
    Jul 28, 2005
  • Appl. No.:
    11/572678
  • Inventors:
    Corinne Bushelman - Cumming GA, US
  • Assignee:
    Solvay Advanced Polymers, L.L..C - Alpharetta GA
  • International Classification:
    C08L 77/10
  • US Classification:
    525509000
  • Abstract:
    Polymer composition, comprising at least one aromatic polyamide, at least one first elastomer comprising (i) recurring units derived from at least one acyclic olefin (O1) which comprises at most 4 carbon atoms, and (ii) recurring units derived from at least one acyclic olefin (O2) which comprises more than 6 carbon atoms, and at least one second elastomer and comprising recurring units derived from at least one acyclic olefin (O3) which comprises at most 4 carbon atoms, wherein the second elastomer is free of recurring units derived from an acyclic olefin which comprises more than 6 carbon atoms. Shaped article manufactured from the polymer composition.
  • Method For Making A Polyamide Film

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  • US Patent:
    20110028650, Feb 3, 2011
  • Filed:
    Aug 3, 2010
  • Appl. No.:
    12/849038
  • Inventors:
    Corinne BUSHELMAN - Cumming GA, US
    Gregory Warkoski - Cumming GA, US
    James K. Doty - Alpharetta GA, US
    Bruce H. Bersted - Cumming GA, US
  • Assignee:
    SOLVAY ADVANCED POLYMERS, L.L.C. - Alpharetta GA
  • International Classification:
    C08L 77/00
    C08L 15/00
    C08L 53/00
  • US Classification:
    525 93, 525420, 525178
  • Abstract:
    Method for making a film comprising, as sole layer(s), at least one layer L1 consisting of a polyamide composition comprising an aromatic polyamide and an impact modifier, said method comprising extruding the polyamide composition into the film.
  • Polyamide Compositions And Article Manufactured Therefrom

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  • US Patent:
    20140031481, Jan 30, 2014
  • Filed:
    Apr 4, 2012
  • Appl. No.:
    14/009579
  • Inventors:
    Nancy J. Singletary - Alpharetta GA, US
    Corinne Bushelman - Cumming GA, US
    Linda M. Norfolk - Cumming GA, US
    Suresh R. Sriram - Alpharetta GA, US
    Christie W. Crowe - Alpharetta GA, US
  • Assignee:
    SOLVAY SPECIALITY POLYMERS USA, LLC - Alpharetta GA
  • International Classification:
    C08K 3/34
    C08K 3/22
  • US Classification:
    524456
  • Abstract:
    Polyamide composition very well suited for the manufacture of LED devices comprising: (a) at least a polyamide comprising recurring units derived from at least one C6 and/or at least one C10 diamine and from at least one dicarboxylic acid of the formula HO—C(═O)—R—C(═O)—OH wherein R is a cycloaliphatic moiety; (b) at least a reinforcing filler, and (c) at least a white pigment selected from a group consisting of TiO, ZnS, ZnO and BaSO.
  • Impact-Modified Polyamide Hollow Body

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  • US Patent:
    7807245, Oct 5, 2010
  • Filed:
    Aug 17, 2004
  • Appl. No.:
    10/568692
  • Inventors:
    Bruce Bersted - Cumming GA, US
    James Doty - Alpharetta GA, US
    Jean De Canniere - Brussels, BE
    Claude Dehennau - Waterloo, BE
    Gregory Warkoski - Cumming GA, US
    Corinne Bushelman - Alpharetta GA, US
    Johan Billiet - B-Gent, BE
  • Assignee:
    Solvay Advanced Polymers, L.L.C. - Alpharetta GA
  • International Classification:
    B29D 22/00
    B29D 23/00
    B32B 1/08
  • US Classification:
    428 3691, 428 369, 4284744
  • Abstract:
    Hollow bodies made from impact-modified polyamide. Fuel line hoses for both liquid fuel delivery and fuel vapor recovery.

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