Claims
- 1. A multilayer film laminate adapted for aseptic packaging applications, said film comprising:
(a) an inner polymeric surface sealant layer comprising an olefin polymer having a Vicat Softening Point greater than 90° C.; (b) an intermediate oxygen barrier layer; and (c) an outer polymeric surface layer selected from the group consisting of olefin polymers having a Vicat Softening Point greater than 90° C. and polyester homopolymers or copolymers having a silicone exterior coating; wherein said multilayer film laminate is irradiated at a dosage in an amount sufficient to kill microorganisms entrapped between layers of said multilayer film laminate.
- 2. The multilayer film laminate of claim 1, wherein said multilayer laminate is irradiated at a dosage between 1 and 20 Megarads.
- 3. The multilayer film laminate of claim 1, wherein said multilayer laminate is irradiated at a dosage in an amount of at least 2 Megarads.
- 4. The multilayer film laminate of claim 1, wherein said multilayer laminate is irradiated at a dosage in an amount of at least 4 Megarads.
- 5. The multilayer film laminate of claim 1, wherein said multilayer laminate is irradiated at a dosage in an amount of at least 5 Megarads.
- 6. The multilayer film laminate of claim 1, wherein said multilayer laminate has a total thickness of less than 10 mil.
- 7. The multilayer film laminate of claim 1, wherein said multilayer laminate has a total thickness of less than 4.0 mil.
- 8. The multilayer film laminate of claim 1, wherein said inner sealant layer is selected from the group consisting of ethylene-α-olefin copolymers, low density polyethylene, high density polyethylene, polypropylene-ethylene copolymers and mixtures thereof.
- 9. The multilayer film laminate of claim 1, wherein said inner sealant layer comprises an ethylene-α-olefin copolymer.
- 10. The multilayer film laminate of claim 9, wherein said ethylene-α-olefin copolymer comprises a copolymer of ethylene and at least one C3 to C10 α-olefin.
- 11. The multilayer film laminate of claim 10, wherein said at least one C3 to C10 α-olefin is selected from the group consisting of hexene-1 and octene-1.
- 12. The multilayer film laminate of claim 1, wherein said inner sealant layer has a melting point greater than 120° C.
- 13. The multilayer film laminate of claim 1, wherein said inner sealant layer has a density greater than 0.910 g/cc.
- 14. The multilayer film laminate of claim 1, wherein said inner sealant layer has a density greater than 0.915 g/cc.
- 15. The multilayer film laminate of claim 1, wherein said olefin polymer comprises a propylene-ethylene copolymer having an ethylene content of less than 10% by weight.
- 16. The multilayer film laminate of claim 1, wherein said oxygen barrier layer is selected from the group consisting of ethylene-vinyl alcohol copolymer, metallized films, copolymers of vinylidene chloride, metal foil and oxide coated films.
- 17. The multilayer film laminate of claim 1, wherein said oxygen barrier layer comprises a metallized film selected from the group consisting of metallized biaxially oriented polyester terephthalate and metallized biaxially oriented nylon.
- 18. The multilayer film laminate of claim 1, wherein said oxygen barrier layer comprises a metal oxide coated film wherein the metal oxide is selected from the group consisting of aluminum oxide and silicon oxide.
- 19. The multilayer film laminate of claim 1, wherein said oxygen barrier layer comprises a metal foil.
- 20. The multilayer film laminate of claim 1, wherein said outer layer is selected from the group consisting of ethylene-α-olefin copolymers, low density polyethylene, high density polyethylene, polypropylene-ethylene copolymers, polypropylene homopolymers and copolymers, and polyester homopolymers and copolymers having a silicone exterior coating.
- 21. The multilayer film laminate of claim 1, wherein said outer layer comprises a biaxially oriented polypropylene homopolymer or copolymer film.
- 22. The multilayer film laminate of claim 1, wherein said outer layer comprises a cast polypropylene homopolymer or copolymer film.
- 23. The multilayer film laminate of claim 1, wherein said outer layer includes a layer of ink printed on at least one surface thereof.
- 24. The multilayer film laminate of claim 1, wherein said film laminate further includes at least one first intermediate layer between said inner sealant layer and said oxygen barrier layer.
- 25. The multilayer film laminate of claim 1, wherein said film laminate further includes at least one second intermediate layer between said outer layer and said oxygen barrier layer.
- 26. The multilayer film laminate of claim 1, wherein said inner sealant layer comprises an exterior surface layer of a multilayer coextruded film.
- 27. The multilayer film laminate of claim 26, wherein said multilayer coextruded film includes five layers including an interior surface layer comprising low density polyethylene, a first tie layer, an ethylene-vinyl alcohol copolymer layer, a second tie layer and an exterior surface layer, wherein said first polymeric adhesive tie layer bonds said interior surface layer to a first surface of said ethylene-vinyl alcohol copolymer layer and said second polymeric adhesive tie layer bonds a second surface of said ethylene-vinyl alcohol copolymer layer to the exterior surface layer of said multilayer coextruded film.
- 28. A multilayer film laminate adapted for aseptic packaging applications, said film comprising:
(a) an inner polymeric surface sealant layer comprising a olefin polymer having a Vicat Softening Point greater than 90° C. selected from the group consisting of ethylene-α-olefin copolymers, low density polyethylene, high density polyethylene, polypropylene-ethylene copolymers and mixtures thereof; (b) an intermediate oxygen barrier layer selected from the group consisting of ethylene-vinyl alcohol copolymer, metallized films, copolymers of vinylidene chloride, metal foil and oxide coated films; and (c) an outer polymeric surface layer comprising a polymeric layer selected from the group consisting of ethylene-α-olefin copolymers, low density polyethylene, high density polyethylene, polypropylene-ethylene copolymers, polypropylene homopolymers and copolymers, and polyester homopolymers and copolymers having a silicone exterior coating, said outer layer having a Vicat Softening Point greater than 90° C.; wherein said multilayer film laminate is irradiated at a dosage in an amount sufficient to kill microorganisms entrapped between layers of said multilayer film laminate.
- 29. A process for aseptically packaging a product comprising:
(A) providing an irradiated multilayer film laminate adapted for aseptic packaging applications, said film comprising:
(i) an inner polymeric surface sealant layer comprising an olefin polymer having a Vicat Softening Point greater than 90° C.; (ii) an intermediate oxygen barrier layer; and (iii) an outer polymeric surface layer comprising a polymeric layer selected from olefin polymers and polyester homopolymers or copolymers having a silicone exterior coating, said outer layer having a Vicat Softening Point greater than 90° C.; wherein said multilayer film laminate is irradiated at a dosage in an amount sufficient to kill microorganisms entrapped between layers of said multilayer film laminate; (B) exposing both surfaces of said packaging film to a hydrogen peroxide sterilization solution; (C) removing substantially all hydrogen peroxide sterilization solution from the surfaces of said packaging film; (D) forming a substantially vertical, longitudinally sealed tube; (E) filling said tube with a material to be packaged; (F) sealing transversely across said tube to enclose the material to be packaged in individual packages; and (G) cutting the packaging film through sealed areas between individual packages.
- 30. The process according to claim 29, wherein said multilayer laminate is irradiated at a dosage in an amount of at least 2 Megarads.
- 31. The process according to claim 29, wherein said multilayer laminate is irradiated at a dosage in an amount of at least 4 Megarads.
- 32. The process according to claim 29, wherein said multilayer laminate is irradiated at a dosage in an amount of at least 5 Megarads.
- 33. The process according to claim 29, wherein said multilayer laminate is irradiated at a dosage between 1 and 20 Megarads.
- 34. An aseptic package for food items formed from a packaging film irradiated at a dosage in an amount sufficient to kill microorganisms entrapped between layers of said packaging film, said packaging film being folded into a cylinder and sealed longitudinally, said packaging film including:
(i) an inner surface sealant layer comprising a olefin polymer having a Vicat Softening Point greater than 90° C.; (ii) an intermediate oxygen barrier layer; and
- 35. The multilayer film laminate of claim 1 having an Elmendorf tear strength of 300 grams force or less in at least the transverse direction.
- 36. A multilayer film laminate adapted for aseptic packaging applications, said film comprising:
(a) an inner polymeric surface sealant layer comprising an olefin polymer having a Vicat Softening Point greater than 90° C.; (b) an intermediate oxygen barrier layer; and (c) an outer polymeric surface layer selected from the group consisting of olefin polymers having a Vicat Softening Point greater than 90° C. and polyester homopolymers or copolymers having a hydrogen peroxide resistant exterior coating; wherein said multilayer film laminate is irradiated at a dosage in an amount sufficient to kill microorganisms entrapped between layers of said multilayer film laminate.
- 37. A process for aseptically packaging a product comprising:
(A) providing a multilayer film laminate adapted for aseptic packaging applications, said film comprising:
(i) an inner polymeric surface sealant layer comprising an olefin polymer having a Vicat Softening Point greater than 90° C.; (ii) an intermediate oxygen barrier layer; and (iii) an outer polymeric surface layer comprising a polymeric layer selected from olefin polymers and polyester homopolymers or copolymers having a silicone exterior coating, said outer layer having a Vicat Softening Point greater than 90° C.; (B) irradiating said multilayer film laminate at a dosage in an amount sufficient to kill microorganisms entrapped between layers of said multilayer film laminate; (C) exposing both surfaces of said packaging film to a hydrogen peroxide sterilization solution; (D) removing substantially all hydrogen peroxide sterilization solution from the surfaces of said packaging film; (E) forming a substantially vertical, longitudinally sealed tube; (F) filling said tube with a material to be packaged; (G) sealing transversely across said tube to enclose the material to be packaged in individual packages; and (H) cutting the packaging film through sealed areas between individual packages.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation application claiming the benefit of co-pending U.S. patent application Ser. No. 10/229,441, filed Aug. 27, 2002, which is incorporated herein in its entirety.
Continuations (1)
|
Number |
Date |
Country |
Parent |
10229441 |
Aug 2002 |
US |
Child |
10860901 |
Jun 2004 |
US |