Claims
- 1. As a composition of matter, a polymeric blend, comprising:
- (a) 5 percent to about 40 percent by weight polyetheramide block copolymer; and
- (b) about 60 percent to 95 percent by weight ethylene vinyl alcohol copolymer,
- the polyetheramide block copolymer having the formula: ##STR3## wherein PA is a polyamide and PE is a polyether, n being an integer indicative of the degree of polymerization of the block copolymer, the degree of polymerization being such that its Shore Hardness is about 65D to 60A.
- 2. A blend as in claim 1 wherein said polyetheramide block copolymer has a Shore Hardness of about 55D to 80A.
- 3. A polymeric film made from a compatible polymeric blend, said blend comprising:
- (a) 5 percent to about 40 percent by weight polyetheramide block copolymer; and
- (b) about 60 percent to 95 percent by weight ethylene vinyl alcohol copolymer,
- the polyetheramide block copolymer having the formula: ##STR4## wherein PA is a polyamide and PE is a polyether, n being an integer indicative of the degree of polymerization of the block copolymer, the degree of polymerization being such that its Shore Hardness is about 65D to 60A.
- 4. A film as in claim 3 wherein said polyetheramide block copolymer has a Shore Hardness of about 55D to 80A.
- 5. A polymeric film as in claim 3 and including, on at least one surface thereof, a layer of nylon polymer.
- 6. A molecularly oriented polymeric film made from a compatible polymeric blend, said blend comprising:
- (a) 5 percent by weight to about 40 percent by weight polyetheramide block copolymer; and
- (b) about 60 percent to 95 percent by weight ethylene vinyl alcohol copolymer,
- the polyetheramide block copolymer having the formula: ##STR5## wherein PA is polyamide and PE is a polyether, n being an integer indicative of the degree of polymerization of the block copolymer, the degree of polymerization being such that its Shore Hardness is about 65D to 60A.
- 7. An oriented film as in claim 6 and including on at least one surface thereof, a layer of nylon polymer.
- 8. An oriented film as in claim 7 wherein said film is uniaxially oriented at a ratio of about 3/1 to 4/1.
- 9. An oriented film as in claim 9 wherein said film is biaxially oriented at a ratio of about 2.times.2 to 4.times.4.
- 10. An oriented film as in claim 6 wherein said polyetheramide block copolymer has a Shore Hardness of 55D to 80A.
- 11. An oriented film as in claim 7 wherein said polyetheramide block copolymer has a Shore Hardness of 55D to 80A.
- 12. An oriented film as in claim 8 wherein said polyetheramide block copolymer has a Shore Hardness of 55D to 80A.
- 13. An oriented film as in claim 9 wherein said polyetheramide block copolymer has a Shore Hardness of 55D to 80A.
- 14. An oriented film as in claim 6 wherein said polyetheramide block polymer has a Shore Hardness of about 55D.
- 15. An oriented film as in claim 7 wherein said polyetheramide block copolymer has a Shore Hardness of about 55D.
- 16. An oriented film as in claim 8 wherein said polyetheramide block copolymer has a Shore Hardness of about 55D.
- 17. An oriented film as in claim 9 wherein said polyetheramide block copolymer has a Shore Hardness of about 55D.
- 18. An oriented film as in claim 7 wherein the overall film thickness is about 0.4 to 2.0 mils and the thickness of said blend layer of ethylene vinyl alcohol and polyetheramide block copolymer is about 20% to 50% of the overall thickness of said film.
- 19. An oriented film as in claim 8 wherein the overall film thickness is about 0.4 to 2.0 mils, and the thickness of said blend layer of ethylene vinyl alcohol and polyetheramide block copolymer is about 20% to 50% of the overall thickness of said film.
- 20. An oriented film as in claim 9 wherein the overall film thickness is about 0.4 to 2.0 mils, and the thickness of said blend layer of ethylene vinyl alcohol and polyetheramide block copolymer is about 20% to 50% of the overall thickness of said film.
- 21. A molecularly oriented polymeric film, comprising:
- (a) a first layer of a blend material comprising: (i) 5 percent to about 40 percent by weight polyetheramide block copolymer and (ii) about 60 percent to 95 percent by weight ethylene vinyl alcohol copolymer, said first layer having two surfaces;
- (b) second and third layers comprising nylon on the opposing surfaces of said first layer; and
- (c) a fourth layer on the surface of said third layer and comprising a heat sealable polymer or copolymer, having heat sealing properties compatible with heat sealing,
- the polyetheramide block copolymer having the formula: ##STR6## wherein PA is a polyamide and PE is a polyether, n being an integer indicative of the degree of polymerization of the block copolymer, the degree of polymerization being such that its Shore Hardness is about 65D to 60A.
- 22. A molecularly oriented polymeric film as in claim 21 and including a fifth layer of ethylene vinyl acetate between said fourth sealant layer and said third layer.
- 23. A molecularly oriented polymeric film as in claim 21 and including fifth and sixth layers between said fourth sealant layer and said third layer, said fifth layer being ethylene vinyl acetate, said sixth layer being an adhesive polymer comprising a carboxy modified olefin polymer or copolymer; said fifth layer being adjacent said fourth layer, said sixth layer being adjacent said third layer, said fifth and sixth layers having a common interface.
- 24. A molecularly oriented film as in claim 21 wherein said film is uniaxially oriented at an orientation ratio of about 3/1 to 4/1.
- 25. A molecularly oriented film as in claim 22 wherein said film is uniaxially oriented at an orientation ratio of about 3/1 to 4/1.
- 26. A molecularly oriented film as in claim 23 wherein said film is uniaxially oriented at an orientation ratio of about 3/1 to 4/1.
- 27. A molecularly oriented film as in claim 21 wherein said film is biaxially oriented at a ratio of 2.times.2 to 4.times.4.
- 28. A molecularly oriented film as in claim 22 wherein said film is biaxially oriented at a ratio of 2.times.2 to 4.times.4.
- 29. A molecularly oriented film as in claim 23 wherein said film is biaxially oriented at a ratio of 2.times.2 to 4.times.4.
- 30. A molecularly oriented film as in claim 21 wherein the composition of said fourth sealant layer is chosen from the group consisting of low density polyethylene, ethylene vinyl acetate, ionomer, and blends of the members of said group.
- 31. A molecularly oriented film as in claim 22 wherein the composition of said fourth sealant layer is chosen from the group consisting of low density polyethylene, ethylene vinyl acetate, ionomer, and blends of the members of said group.
- 32. A molecularly oriented film as in claim 23 wherein the composition of said fourth sealant layer is chosen from the group consisting of low density polyethylene, ethylene vinyl acetate, ionomer, and blends of the members of said group.
- 33. A method of making a film, comprising:
- (a) forming a mixture of 5 weight percent to about 40 weight percent of polyetheramide block copolymer and about 60 percent to 95 percent by weight ethylene vinyl alcohol copolymer;
- (b) extruding said mixture through an extruder and die apparatus to form a film in which said mixture is present as a layer of blended materials of said mixture; and
- (c) cooling said film,
- the polyetheramide block copolymer having the formula: ##STR7## wherein PA is a polyamide and PE is a polyether, n being an integer indicative of the degree of polymerization of the block copolymer, the degree of polymerization being such that its Shore Hardness is 65D to 60A.
- 34. A method as in claim 33 including the subsequent steps of reheating the film and molecularly orienting it.
- 35. A method as in claim 33 and including coextruding, on one surface of said film, a layer of nylon to form a multiple layer film.
- 36. A method as in claim 35 and including the subsequent steps of reheating said multiple layer film and molecularly orienting it.
- 37. A method as in claim 33 and including coextruding, on both surfaces of said film, layers of nylon to form a multiple layer film.
- 38. A method as in claim 37 and including the subsequent steps of reheating the multiple layer film and molecularly orienting it.
- 39. A method as in claim 36 wherein said film is uniaxially oriented at a ratio of about 3/1 to 4/1.
- 40. A method as in claim 36 wherein said film is biaxially oriented at a ratio of about 2.times.2 to 4.times.4.
- 41. A method as in claim 38 wherein said film is uniaxially oriented at a ratio of about 3/1 to 4/1.
- 42. A method as in claim 38 wherein said film is biaxially oriented at a ratio of about 2.times.2 to 4.times.4.
Parent Case Info
This is a continuation of application Ser. No. 558,820, filed Dec. 6, 1983 now abandoned.
US Referenced Citations (5)
Number |
Name |
Date |
Kind |
3440316 |
Miyake et al. |
Apr 1969 |
|
3594266 |
Okazaki et al. |
Jul 1971 |
|
4082854 |
Yamada et al. |
Apr 1978 |
|
4238582 |
Deleens et al. |
Dec 1980 |
|
4347332 |
Odorzynski et al. |
Aug 1982 |
|
Non-Patent Literature Citations (2)
Entry |
Deleens, "A New Generation of Thermoplastic Elastomers the Polyether Block Amide (PEBA)", presented at 39th Ann. Tech. Conf. of SPE, Boston, Mass., May 4-7, 1981. |
Technical Bulletin on Polyether Block Amides (PEBA) Ato Chimie, Paris, Fr (1982). |
Continuations (1)
|
Number |
Date |
Country |
Parent |
558820 |
Dec 1983 |
|