Invention Grant
- Patent Title: Dense articles formed from tetrafluoroethylene core shell copolymers and methods of making the same
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Application No.: US14577597Application Date: 2014-12-19
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Publication No.: US09644054B2Publication Date: 2017-05-09
- Inventor: Lawrence A. Ford , Michael E. Kennedy , Shaofeng Ran , Todd S. Sayler , Gregory J. Shafer
- Applicant: W. L. Gore & Associates, Inc. , W. L. Gore & Associates GmbH
- Applicant Address: US DE Newark DE Putzbrunn
- Assignee: W. L. Gore & Associates, Inc.,W. L. Gore & Associates GmbH
- Current Assignee: W. L. Gore & Associates, Inc.,W. L. Gore & Associates GmbH
- Current Assignee Address: US DE Newark DE Putzbrunn
- Agent Amy L. Miller
- Main IPC: C08F214/26
- IPC: C08F214/26 ; C08F259/08 ; B29C55/00 ; B32B15/085 ; B32B27/08 ; B32B27/32 ; C08J9/00 ; C09D127/18 ; C08J5/18 ; B29C55/02 ; B29K27/18 ; B29L9/00

Abstract:
A dense article that includes a dense TFE copolymer film is provided. The dense TFE copolymer film includes a first endotherm between about 50° C. and about 300° C., a second endotherm between about 320° C. and about 350° C., and a third endotherm between about 350° C. and about 400° C. To form the dense article, a core shell TFE copolymer is formed into a pellet, ram extruded into a tape, dried into a dried preform, and then stretched into a dense TFE copolymer film that exhibits improved physical and mechanical properties. The dense TFE copolymer film is produced directly from the dried preform at a deformation temperature less than about 335° C. and without increasing the porosity of the dried preform, as would conventionally be done in expansion processes. The dense TFE copolymer films have a methane permeability less than about 20 μg*micron/cm2/min. The dense articles have a void volume less than about 20%.
Public/Granted literature
- US20160177001A1 Dense Articles Formed From Tetrafluoroethylene Core Shell Copolymers and Methods of Making The Same Public/Granted day:2016-06-23
Information query
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