Claims
- 1. The method of preparing an adherent and coherent castable amorphous fluorinated copolymer coating upon the surface of a substrate, the coating consisting essentially of high molecular weight fluoropolymers of ethylenic-cyclo oxyaliphatic substituted ethylenic copolymer, and including the steps of:
- (a) depositing an adherent initial film of a fluoropolymer having a thickness between about 1,500 .ANG. and 50,000 .ANG. to the surface of said substrate by vacuum deposition, said initial fluoropolymer coating being selected from the group consisting of fluorinated ethylenic-cyclo oxyaliphatic substituted ethylenic copolymers and having the structural repeating unit: ##STR6## wherein "m" and "n" represent integers providing a molecular weight of between about 230,000 and 500,000, with the values of "m" and "n" providing a copolymer with a glass transition temperature ranging from between about 160.degree. C. and 240.degree. C.; and
- (b) thereafter applying a second coating as a coverlay upon said initial film, said second coating consisting essentially of an amorphous fluorinated ethylenic-cyclo oxyaliphatic substituted ethylenic copolymer and having the structural repeating unit: ##STR7## wherein "m" and "n" represent integers providing a molecular weight of between about 230,000 and 500,000, with the values of "m" and "n" providing a copolymer with a glass transition temperature ranging from between about 160.degree. C. and 240.degree. C., the second coating being applied to said initial film layer in castable liquid state, and with the composite film having a thickness greater than about 2 mils.
- 2. The method as defined in claim 1 wherein the evaporative deposition is undertaken at a pressure of approximately 10.sup.-5 TORR.
- 3. The method of preparing an adherent and coherent castable amorphous fluorinated ethylenic-cyclo oxyaliphatic substituted ethylenic copolymer coating upon the surface of a substrate and including the steps of:
- (a) depositing an adherent initial film of a fluorinated ethylenic-cyclo oxyaliphatic substituted ethylenic copolymer having a thickness between about 1,500 .ANG. and 10,000 .ANG. to the surface of said substrate by vacuum deposition, said initial fluorinated ethylenic-cyclo oxyaliphatic substituted ethylenic copolymer coating being a fluoropolymer having the structural repeating unit: ##STR8## wherein "m" and "n" represent integers providing a molecular weight of between about 230,000 and 500,000, with the values of "m" and "n" providing a copolymer with a glass transition temperature ranging from between about 160.degree. C. and 240.degree. C.;
- (b) thereafter depositing a second adherent film of a fluorinated ethylenic-cyclo oxyaliphatic substituted ethylenic copolymer having a thickness of between about 2,000 .ANG. to 10,000 .ANG. to the surface of said adherent initial film, said second coating also being selected from the group consisting of fluorinated ethylenic-cyclo oxyaliphatic substituted ethylenic copolymers with a structural formula having the repeating unit: ##STR9## wherein "m" and "n" represent integers providing a molecular weight of between about 230,000 and 500,000, with the values of "m" and "n" providing a copolymer with a glass transition temperature ranging from between about 160.degree. C. and 240.degree. C.; and
- (c) thereafter applying a coverlay coating upon the surface of said second deposited film, said coverlay coating consisting essentially of the same amorphous fluorinated ethylenic-cyclo oxyaliphatic substituted ethylenic copolymer and being applied to the surface of said second deposited film in castable liquid state, and with the composite film having a thickness greater than about 2 mils.
CROSS-REFERENCE TO RELATED APPLICATION
This is a Continuation of application Ser. No. 07/679,255, filed on Apr. 2, 1991, now abandoned, which was a continuation-in-part of application Ser. No. 07/506,720 filed Apr. 10, 1990 entitled "METHOD OF PREPARING AMORPHOUS FLUOROCARBON COATINGS", now abandoned, which was a continuation of PCT/US90/06696 filed Nov. 15, 1990.
US Referenced Citations (14)
Continuations (1)
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679255 |
Apr 1991 |
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Continuation in Parts (1)
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506720 |
Apr 1990 |
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