Claims
- 1. An improved clear oxygen barrier and oxygen absorbing multiple layer structure comprising a core layer comprising a blend of a xylylene group-containing polyamide and up to 250 ppm of a transition metal catalyst disposed between two polyester layers.
- 2. A film made from the multiple layer structure of claim 1.
- 3. A container made from the multiple layer structure of claim 1.
- 4. A multiple layer structure according to claim 1, wherein, the xylylene group-containing polyamide is MXD6 nylon and the transition metal is cobalt octoate.
- 5. A film made from the multiple layer structure of claim 4.
- 6. A container made from the multiple layer structure of claim 4.
- 7. An improved clear oxygen barrier and oxygen absorbing multiple layer structure comprising a core layer comprising a blend of MXD6 nylon and up to about 250 ppm cobalt octoate disposed between two layers of PET.
- 8. A film made from the multiple layer structure of claim 7.
- 9. A container made from the multiple layer structure of claim 7.
- 10. An improved clear oxygen barrier and oxygen absorbing composition comprising a blend of polyester, a xylylene group-containing polyamide and up to 250 ppm of a transition metal catalyst, wherein, the composition is oriented to a degree so that the MXD6 domain increases in size up to less than the wavelength of light.
- 11. A composition according to claim 10, wherein the polyester is PET and the catalyst is cobalt.
- 12. A composition according to claim 10, wherein, the polyamide is MXD6 and the catalyst is cobalt.
- 13. A composition according to claim 10, wherein, the polyester is PET, the polyamide is MXD6 and the catalyst is up to 120 ppm cobalt octoate.
- 14. A film made from the composition of claim 10.
- 15. A container made from the composition of claim 10.
- 16. A film made from the composition of claim 11.
- 17. A container made from the composition of claim 11.
- 18. A film made from the composition of claim 12.
- 19. A container made from the composition of claim 12.
- 20. A film made from the composition of claim 13.
- 21. A container made from the composition of claim 13.
- 22. An improved clear oxygen barrier and oxygen absorbing composition comprising a blend of a polyester with oxygen barrier properties greater than polyolefins, a xylylene group-containing polyamide and up to 250 ppm of a transition metal catalyst.
- 23. The composition of claim 22, wherein the polyester is PET, the polyamide is MXD6 nylon and the transition metal is cobalt octoate.
- 24. A film made from the composition of claim 22, wherein, the film is oriented so that the MXD6 domain increases in size up to less than the wavelength of light.
- 25. A container made from the composition of claim 22.
- 26. A film made from the composition of claim 23.
- 27. A container made from the composition of claim 23.
- 28. An improved clear oxygen barrier and oxygen absorbing multiple layer structure comprising a blend of a first polyester, a xylylene group-containing polyamide and up to 250 ppm of a transition metal catalyst disposed between two layers of a second polyester, wherein, the structure is oriented to a degree so that the MXD6 domain increases in size up to less than the wavelength of light.
- 29. A multiple layer structure according to claim 28, wherein, the first polyester is PET, the polyamide is MXD6 nylon and the catalyst is up to 120 ppm cobalt octoate.
- 30. A multiple layer structure according to claim 28, wherein, the first and second polyesters are PET, the polyamide is MXD6 and the catalyst is cobalt octoate.
- 31. A film made from the multiple layer structure of claim 28.
- 32. A film made from the multiple layer structure of claim 29.
- 33. A film made from the multiple layer structure of claim 30.
- 34. An improved clear oxygen barrier and oxygen absorbing multiple layer flexible packaging structure, wherein, the layers are firmly adhered to each other in face to face contact, the structure comprising, in order:
(a) a heat sealant layer comprising a polyamide, (b) an oxygen barrier and oxygen absorbing core layer comprising a blend of a xylylene group-containing polyamide and up to 250 ppm of a transition metal catalyst. (c) an outer protective layer comprised of a polyamide.
- 35. The packaging structure of claim 34, wherein, the structure is oriented so that the MXD6 domain increases in size up to less than the wavelength of light.
- 36. A multiple layer flexible packaging structure according to claim 34, wherein, adhesive layers are disposed on either side of and adjacent to the oxygen barrier core layer.
- 37. A multiple layer flexible packaging structure according to claim 34, wherein, the heat sealant layer and the outer protective layer are comprised of nylon 6.
- 38. A multiple layer flexible packaging structure according to claim 34, wherein, the core layer is comprised of a blend of MXD6 nylon and cobalt octoate.
- 39. A multiple layer flexible packaging structure according to claim 34, wherein, the heat sealant layer and the outer protective layer are comprised of nylon 6 and the oxygen barrier core layer of a blend of MXD6 and cobalt octoate.
- 40. A retortable food pouch fabricated from the multiple layer flexible packaging structures of claim 34.
- 41. A retortable food pouch fabricated from the multiple layer flexible packaging structures of claim 36.
- 42. A retortable food pouch fabricated from the multiple layer flexible packaging structures of claim 37.
- 43. A retortable food pouch fabricated from the multiple layer flexible packaging structures of claim 38.
- 44. A retortable food pouch fabricated from the multiple layer flexible packaging structures of claim 39.
- 45. An improved clear oxygen barrier and oxygen absorbing multiple layer flexible packaging structure, wherein, the layers are firmly adhered to each other in face to face contact, the structure comprising, in order:
(a) a heat sealant layer of nylon 6; (b) an oxygen barrier and oxygen absorbing core layer comprising a blend of MXD6 and 120 ppm cobalt octoate; and (c) an outer protective layer of nylon 6; wherein, the packaging structure is suitable for retort applications.
- 46. A retortable food pouch fabricated from the multiple layer flexible packaging structure of claim 45.
- 47. A method of making an improved clear oxygen barrier and oxygen absorbing container comprising the steps of:
(a) blending a polyester, a xylylene group-containing polyamide and up to about 250 ppm of a transition metal catalyst; (b) heating the blend into a molten state; and (c) extrusion blow molding a container from the molten blend.
- 48. A method according to claim 47 wherein, the polyamide in the blend is MXD6 and the catalyst is cobalt octoate.
- 49. A method according to claim 47, wherein, the polyester is PET.
- 50. A method according to claim 47, wherein, the polyester is PET, the polyamide is MXD6 and the catalyst is cobalt octoate.
- 51. A method according to claim 50, wherein, the MXD6 is present in an amount of from about 2.5 wt. % to about 15 wt. % of the blend.
- 52. A method according to claim 50, wherein, the MXD6 is present in an amount of from about 2.5 wt. % to about 15 wt. % of the blend and the cobalt octoate is present in an amount of from about 49 ppm to about 120 ppm.
- 53. A method according to claim 50, wherein, the MXD6 is present in an amount of from about 4 wt. % to about 10 wt. % of the blend.
- 54. A method according to claim 50, wherein, the MXD6 is present in an amount of from about 4 wt. % to about 10 wt. % of the blend and the cobalt octoate is present in an amount of from about 49 ppm to about 120 ppm.
- 55. A method according to claim 50, wherein, the MXD6 is present in an amount of from about 4 wt. % to about 10 wt. % of the blend and the cobalt octoate is present in an amount of about 62 ppm.
- 56. A method according to claim 50, wherein, the MXD6 is present in an amount of about 7.5 wt % of the blend and the cobalt is present in the amount of about 62 ppm.
- 57. A container made by the method of claim 52.
- 58. A container made by the method of claim 54.
- 59. A container made by the method of claim 55.
- 60. A container made by the method of claim 56.
- 61. A method for making an improved clear oxygen barrier and oxygen absorbing multiple layer container comprising the steps of:
(a) blending a first polyester, a xylylene group-containing polyamide and up to about 250 ppm of a transition metal catalyst; (b) heating the blend into a molten state; (c) heating a second polyester into a molten state; and (d) coextrusion blow-molding a container from the molten blend and the second polyester; wherein, the coextrusion comprises a blend layer disposed between two layers of polyester.
- 62. A method according to claim 61, wherein, the polyamide in the blend is MXD6, the polyester in the blend is PET and the catalyst is cobalt octoate.
- 63. A method according to claim 62, wherein the second polyester is PET.
- 64. A method according to claim 61, wherein, the MXD6 is present in an amount of from about 4 wt. % to about 10 wt. % of the blend and the cobalt octoate is present in an amount of from about 49 ppm to about 120 ppm and the second polyester is PET.
- 65. A method according to claim 61, wherein, the MXD6 is present in an amount of about 7.5 wt. % of the blend, the cobalt octoate is present in an amount of about 100 ppm and the second polyester is PET.
- 66. A container made by the method of claim 61.
- 67. A container made by the method of claim 62.
- 68. A container made by the method of claim 63.
- 69. A container made by the method of claim 64.
- 70. A container made by the method of claim 65.
Parent Case Info
[0001] This application is a continuation-in-part of application Ser. No. 07/472,400, filed Jan. 31, 1990, entitled “Improved Barrier Composition and Articles Made Therefrom”, incorporated herein by reference. The present invention relates to further improvements in the composition and articles of application Ser. No. 07/472,400.
[0002] A continuation-in-part application, Ser. No. 07/761,490 entitled “Improved Barrier Composition and Articles Made Therefrom”, was filed on Sep. 18, 1991 as a continuation of application Ser. No. 07/472,400. application Ser. No. 07/761,490 is incorporated herein by reference.
Continuations (1)
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Number |
Date |
Country |
Parent |
09871834 |
Jun 2001 |
US |
Child |
10355953 |
Jan 2003 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
07472400 |
Jan 1990 |
US |
Child |
09871834 |
Jun 2001 |
US |