CA2104444C

Heat shrinkable nylon food casing having a functionalized ethylenic polymer core layer

Abstract

Tubular, biaxially stretched, heat shrinkable multilayer film food casings comprising inner and outer polyamide layers on either side of a core layer predominantly of one or more ethylenic polymers having a functional moiety selected from the group of esters, anhydrides, and carboxylic acids, and a coextrusion process for making the film.

Term

Term ended

Expired 19 August 2013, 13.1 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

33 claims: 33 independent, 0 dependent

  1. 1
    -65 THE EMBODIMENTS OF THE INVENTION IN WHICH AN EXCLUSIVE PROPTERY OR PRIVILEGE IS CLAIMED ARE DEFINED AS FOLLOWS:1. A tubular, biaxially stretched, heat shrinkable, multilayer film, food casing consisting essentially of three polymeric layers as follows: (a) an inner layer comprising a polyamide;(b) a core layer comprising at least 50% by weight of ethylene vinyl acetate copolymer blended with at least 10% by weight of ethylene methacrylic acid copolymer;and (c) an outer layer comprising a polyamide;wherein said core layer (b) is disposed between said inner layer (a) and said outer layer (c), and said multilayer film has a shrinkage value of at least 10% in at least one direction at 90°C and a thickness of between about 1 to 3 mils (25.4-76.2 microns).
  2. 2
    A casing, as defined in Claim 1, wherein said firm has a shrinkage value of at least 10% at 90°C in both the longitudinal and transverse directions.
  3. 3
    A casing, as defined in Claim 1, wherein said shrinkage value is at least 15%.
  4. 4
    A casing, as defined in Claim 2, wherein said shrinkage value is at least 15% in both directions.
  5. 5
    A casing, as defined in Claim 1, wherein said shrinkage value is at least 20%.
  6. 6
    A casing, as defined in Claim 2, wherein said shrinkage value is at least 20%.
  7. 7
    A casing, as defined in Claim 1, wherein said casing is a seamless tubular film.
  8. 8
    A casing, as defined in Claim 1, wherein said casing is shirred. -66
  9. 9
    A casing, as defined in Claim 1, wherein said inner layer (a) is meat adhering.
  10. 10
    A casing, as defined in Claim 1, wherein said casing has an O2 transmission rate of less than 75 cm3 per m2 per 24 hours at 1 atmosphere and at a temperature of 23°C.
  11. 11
    A casing, as defined in Claim 1, wherein said inner layer (a) is directly adhered to said core layer (b).
  12. 12
    A casing, as defined in Claim 1, wherein said out layer (c) is directly adhered to said layer (b).
  13. 13
    A casing, as defined in Claim 1, wherein said inner layer (a) and said outer layer (c) are both directly adhered to opposing sides of said core layer (b).
  14. 14
    A casing, as defined in Claim 1, wherein said layers (a), (b) and (c) are coextruded.
  15. 15
    A casing, as defined in Claim 1, wherein at least one of said layers is coating laminated.
  16. 16
    A casing, as defined in Claim 1, wherein said multilayer film has a moisture vapor transmission of less than 75 g per m2 per 24 hours at 1 atmosphere and at a temperature of 37.8°C.
  17. 17
    A casing, as defined in Claim 1, wherein said film has a tensile strength in at least one of the machine and transverse directions of at least 15, 000 psi (103 Mpa) at 23°C.
  18. 18
    A casing, as defined in Claim 1, wherein said film has a shrink force of at least about 30 kg/cm at 90°C in both the machine and transverse directions. -6719. A casing, as defined in Claim 1, wherein said inner layer (a) comprises at least 60% by weight of a polyamide or blend of polyamides.
  19. 19
    20. A casing, as defined in claim 1, wherein said inner layer (a) comprises at least 90% by weight of a polyamide or blend of polyamides.
  20. 20
    21. A casing, as defined in claim 1, wherein said inner layer (a) comprising nylon 6.
  21. 21
    22. A casing, as defined in claim 1, wherein said inner layer (a) comprises nylon 6/66.
  22. 22
    23. A casing, as defined in Claim 1, wherein said outer layer (c) comprises nylon 6.
  23. 23
    24. A casing, as defined in Claim 1, wherein said outer layer (c) comprises nylon 6/66.
  24. 24
    25. A casing, as defined in Claim 1, wherein each of said layers (a) and (c) comprise nylon 6/66.
  25. 25
    26. A casing, as defined in Claim 1, wherein said vinyl acetate functional moiety comprises 3 to 14 weight percent of said copolymer.
  26. 26
    27. A casing, as defined in Claim 1, wherein said core layer (b) consists essentially of a blend of EVA and a ethylene methacrylic acid copolymer.
  27. 27
    28. A casing, as defined in claim 27, wherein said EVA has a VA content of between about 4.5 to 12%.
  28. 28
    29. A casing, as defined in Claim 27, wherein said EVA has a melt index between about 0.1 and 0.7 dg/min as measured by ASTM D-1238, condition E. -68
  29. 29
    30. An encased foodstuff comprising a heat processed fat containing and protein containing foodstuff encased in a film casing as defined in Claim 1, wherein said foodstuff is in direct contact with said inner layer (a) and adheres thereto.
  30. 30
    31. A continuous process for making a tubular, biaxially stretched, heat shrinkable multilayer thermoplastic food casing comprising:(a) coextruding a melt plastified multilayer thermoplastic tube having an exterior surface and an interior surface through an annular die wherein said tube comprises an inner polyamide layer and an outer polyamide layer with a core layer between said inner and outer layers of at least one copolymer of ethylene with between 3 to 14 weight percent of an ester, a carboxylic acid or an anhydride;(b) cooling said coextruded tube below the melting point of each layer by applying water to the exterior surface of said tube;(c) transferring said cooled tube to an orientation zone wherein said tube is reheated to a temperature below the melting point of each tube layer followed by cooling while a fluid mass is admitted to the interior of said tube as said tube is passed between first and second means for blocking fluid flow along the interior of said tube thereby causing said tube to stretch circumferentially about the -69 entrapped fluid mass and simultaneous with said circumferential stretching, said tube is stretched in a direction perpendicular thereto to produce a biaxially stretched tubular film;and (d) annealing said biaxially stretched film at elevated temperature to dimensionally stabilize said film.
  31. 31
    32. A process, as defined in Claim 31, wherein said coextruded tube after cooling step (b) and prior to said stretching step (c), has its exterior surface contacted with water under conditions sufficient to cause said outer polyamide layer to absorb water to a level greater than 0.1 weight percent based upon the weight of the outer polyamide layer.
  32. 32
    33. A process, as defined in Claim 32, wherein said inner polyamide layer has less than 1% by weight absorbed water prior to biaxially stretching.
  33. 33
    34. A process, as defined in Claim 32, wherein said inner polyamide layer has less than 1% and said outer polyamide layer has more than 0.1% by weight of water therein after extrusion and prior to biaxially stretching.
Independent claims33