Patent · US4478665A · A · US
Method for manufacturing highly porous, high strength PTFE articles
- (11) Publication number
- US4478665A
- (21) Application number
- US-45980483-A
- (22) Filing date
- 1983-01-21
- (30) Priority date
- 1980-11-06
- (43) Publication date
- 1984-10-23
- (45) Date of grant
- 1984-10-23
- (52) CPC
- C08J Working-up; general processes of compounding; after-treatment not covered by subclasses C08B, C08C, C08F, C08G or C08H: 9/28, 2327/18, 5/12
- A61F Filters implantable into blood vessels; prostheses; devices providing patency to, or preventing collapsing of, tubular structures of the body, e.g. stents; orthopaedic, nursing or contraceptive devices; fomentation; treatment or protection of eyes or ears; bandages, dressings or absorbent pads; first-aid kits: 2/00
- B29C Shaping or joining of plastics; shaping of material in a plastic state, not otherwise provided for; after-treatment of the shaped products, e.g. repairing: 55/023
- B29K Indexing scheme associated with subclasses B29B, B29C or B29D, relating to moulding materials or to materials for {moulds, } reinforcements, fillers or preformed parts, e.g. inserts: 2027/18
- (73) Assignee
- GORE & ASS
- (54) Title
- Method for manufacturing highly porous, high strength PTFE articles
- (57) Abstract
A method for producing a multi-component, porous PTFE article. Components of PTFE containing a liquid lubricant are placed in intimate contact, dried and then stretched in one or more directions. The PTFE components may optionally contain a filler. The resultant product has a virtually uninterrupted structure at the join and possesses very high bond strengths.
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Claims (29)
- A process for making a multi-layer article of porous expanded polytetrafluoroethylene comprising: (a) intimately superimposing on top of one another at least two layers of unsintered polytetrafluoroethylene containing a liquid lubricant, at a temperature below the crystalline melt point of polytetrafluoroethylene; (b) removing said lubricant from said multi-layer article; (c) expanding in at least one direction said multi-layer article, from which the lubricant has been removed, at a rate exceeding 10% per second at an elevated temperature below the crystalline melt point of polytetrafluorethylene.
- The process of claim 1 wherein said contacting is performed in the nip between two calender rolls.
- The process of claim 1 wherein said expansion is performed at a rate exceeding 50% per second.
- The process of claim 1 wherein said expansion is performed at a rate exceeding 1000% per second.
- The process of claim 1 wherein said expansion is performed at a rate exceeding 10,000% per second.
- The process of claim 1 wherein said expansion is biaxial.
- The process of claim 6 wherein said biaxial expansion is performed simultaneously.
- The process of claim 1 wherein said expansion is multi-axial.
- The process of claim 8 wherein said multi-axial expansion is performed simultaneously.
- The process of claim 1 wherein at least one of said layers contains a filler.
- The process of claim 10 wherein said filler is a pigment.
- The process of claim 10 wherein said filler is TiO 2.
- The process of claim 12 wherein said filler is TiO 2 having an average particle diameter of about 20 nanometers.
- The process of claim 10 wherein said filler is carbon black.
- The process of claim 10 wherein said filler is a mica.
- The process of claim 10 wherein said filler is asbestos.
- The process of claim 10 wherein said filler is silica.
- The process of claim 10 wherein said filler is glass.
- The process of claim 10 wherein said filler is potassium titinate.
- The process of claim 10 wherein said filler is a dielectric fluid.
- The process of claim 10 wherein said filler is polysiloxane.
- The process of claim 1 wherein said multi-layer article after expansion is heated to a temperature above the crystalline melt point of polytetrafluoroethylene to partially sinter said article.
- The process of claim 1 wherein said multi-layer article after expansion is heated to a temperature above the crystalline melt point of polytetrafluoroethylene to fully sinter said article.
- The process of claim 22 wherein said article is further stretched after heating above the crystalline melt point of polytetrafluoroethylene.
- The process of claim 23 wherein said article is further stretched after heating above the crystalline melt point of polytetrafluoroethylene.
- The process of claim 1 in which said layers are extrudates of polytetrafluoroethylene.
- The process of claim 1 in which said layers are expanded porous polytetrafluoroethylene layers that have been wetted with liquid lubricant.
- A process for making a multi-layer article of porous expanded polytetrafluoroethylene comprising: (a) initially superimposing on top of one another at least two layers of unsintered polytetrafluoroethylene containing a liquid lubricant, at a temperature below the crystalline melt point of polytetrafluoroethylene; (b) stretching said multi-layer article at a temperature below the boiling point of said lubricant; (c) removing said lubricant from said stretched article; (d) expanding said multi-layer article at a rate exceeding 10% per second.
- The process of claim 28 wherein at least one of said layers contains a filler.
Citations (13)
- DE2409178A1
- JPS5497686A
- NL6511556A
- US2964065A
- US3207644A
- US3767500A
- US3887761A
- US3953566A
- US3962153A
- US4061517A
- US4187390A
- US4283448A
- US612897A
Record as JSON
{
"publication_number": "US4478665A",
"country": "US",
"kind": "A",
"title": "Method for manufacturing highly porous, high strength PTFE articles",
"abstract": "A method for producing a multi-component, porous PTFE article. Components of PTFE containing a liquid lubricant are placed in intimate contact, dried and then stretched in one or more directions. The PTFE components may optionally contain a filler. The resultant product has a virtually uninterrupted structure at the join and possesses very high bond strengths.",
"claims": [
"1. A process for making a multi-layer article of porous expanded polytetrafluoroethylene comprising: (a) intimately superimposing on top of one another at least two layers of unsintered polytetrafluoroethylene containing a liquid lubricant, at a temperature below the crystalline melt point of polytetrafluoroethylene; (b) removing said lubricant from said multi-layer article; (c) expanding in at least one direction said multi-layer article, from which the lubricant has been removed, at a rate exceeding 10% per second at an elevated temperature below the crystalline melt point of polytetrafluorethylene.",
"2. The process of claim 1 wherein said contacting is performed in the nip between two calender rolls.",
"3. The process of claim 1 wherein said expansion is performed at a rate exceeding 50% per second.",
"4. The process of claim 1 wherein said expansion is performed at a rate exceeding 1000% per second.",
"5. The process of claim 1 wherein said expansion is performed at a rate exceeding 10,000% per second.",
"6. The process of claim 1 wherein said expansion is biaxial.",
"7. The process of claim 6 wherein said biaxial expansion is performed simultaneously.",
"8. The process of claim 1 wherein said expansion is multi-axial.",
"9. The process of claim 8 wherein said multi-axial expansion is performed simultaneously.",
"10. The process of claim 1 wherein at least one of said layers contains a filler.",
"11. The process of claim 10 wherein said filler is a pigment.",
"12. The process of claim 10 wherein said filler is TiO 2.",
"13. The process of claim 12 wherein said filler is TiO 2 having an average particle diameter of about 20 nanometers.",
"14. The process of claim 10 wherein said filler is carbon black.",
"15. The process of claim 10 wherein said filler is a mica.",
"16. The process of claim 10 wherein said filler is asbestos.",
"17. The process of claim 10 wherein said filler is silica.",
"18. The process of claim 10 wherein said filler is glass.",
"19. The process of claim 10 wherein said filler is potassium titinate.",
"20. The process of claim 10 wherein said filler is a dielectric fluid.",
"21. The process of claim 10 wherein said filler is polysiloxane.",
"22. The process of claim 1 wherein said multi-layer article after expansion is heated to a temperature above the crystalline melt point of polytetrafluoroethylene to partially sinter said article.",
"23. The process of claim 1 wherein said multi-layer article after expansion is heated to a temperature above the crystalline melt point of polytetrafluoroethylene to fully sinter said article.",
"24. The process of claim 22 wherein said article is further stretched after heating above the crystalline melt point of polytetrafluoroethylene.",
"25. The process of claim 23 wherein said article is further stretched after heating above the crystalline melt point of polytetrafluoroethylene.",
"26. The process of claim 1 in which said layers are extrudates of polytetrafluoroethylene.",
"27. The process of claim 1 in which said layers are expanded porous polytetrafluoroethylene layers that have been wetted with liquid lubricant.",
"28. A process for making a multi-layer article of porous expanded polytetrafluoroethylene comprising: (a) initially superimposing on top of one another at least two layers of unsintered polytetrafluoroethylene containing a liquid lubricant, at a temperature below the crystalline melt point of polytetrafluoroethylene; (b) stretching said multi-layer article at a temperature below the boiling point of said lubricant; (c) removing said lubricant from said stretched article; (d) expanding said multi-layer article at a rate exceeding 10% per second.",
"29. The process of claim 28 wherein at least one of said layers contains a filler."
],
"cpc": [
"C08J 9/28",
"A61F 2/00",
"B29C 55/023",
"B29K 2027/18",
"C08J 2327/18",
"C08J 5/12"
],
"assignees": [
"GORE & ASS"
],
"filing_date": "1983-01-21",
"publication_date": "1984-10-23",
"grant_date": "1984-10-23",
"priority_date": "1980-11-06",
"application_number": "US-45980483-A",
"family_id": "26899548",
"citations": [
"DE2409178A1",
"JPS5497686A",
"NL6511556A",
"US2964065A",
"US3207644A",
"US3767500A",
"US3887761A",
"US3953566A",
"US3962153A",
"US4061517A",
"US4187390A",
"US4283448A",
"US612897A"
]
}
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