Lidding structure based on aromatic polyester film, coextruded with a sealable/peelable epdxy-containing thermoplastic polymer
A multi-layer film structure suitable as a sealable sheet used for closing foodstuff containers with a peelable seal. This multi-layer film comprises a polyester substrate layer and a heat-sealable layer. The heat-sealable layer is applied by coextrusion and contains an epoxy-containing thermoplastic polymer composition comprising residues of epoxy-containing monomers selected from glycidyl methacrylate, glycidyl acrylate, allyl glycidyl ether, 3,4-epoxy-1-butene, and a mixture of any two or more of such monomers.
1. A film comprising a heat-sealable surface layer and a polyester-containing core layer comprising polyethylene terephthalate, wherein the heat-sealable layer consists of an epoxy-containing thermoplastic polymer, wherein the film is a coextruded heat-sealable and peelable multilayer thermoplastic film, wherein a seal strength of the film at 325° F. (163° C.) with sealing done between the heat-sealable surface layer and crystalline polyethylene terephthalate is in a range from about 0.77 lbs/in (349 g/in) to about 1.22 lbs/in (553 g/in).
2. The film of claim 1 , wherein the epoxy-containing thermoplastic polymer comprises residues of epoxy-containing monomers selected from glycidyl methacrylate, glycidyl acrylate, allyl glycidyl ether, 3,4-epoxy-1-butene, or and mixture of any two or more of such monomers.
3. The film of claim 1 , wherein an amount of residue of epoxy-containing monomers is 20 wt. % or less in the epoxy-containing thermoplastic polymer.
4. The film of claim 1 , wherein an amount of residue of epoxy-containing monomers is 10 wt. % or less in the epoxy-containing thermoplastic polymer.
5. The film of claim 1 , wherein the epoxy-containing thermoplastic polymer comprises polyolefin.
6. The film of claim 1 , wherein the epoxy-containing thermoplastic polymer comprises an ethylene terpolymer of methyl acrylate, glycidyl methacrylate, and ethylene.
7. The film of claim 6 , wherein the ethylene terpolymer has a melt index of about 1 to about 20 grams per 10 minutes measured at 190° C. with 2.16 kilogram weight of ASTM D1238.
8. The film of claim 6 , wherein the ethylene terpolymer has a melting point of 60° C. and a melt index of 6 measured at 190° C. with 2.16 kilogram weight of ASTM D1238.
9. The film of claim 6 , wherein the ethylene terpolymer consists of about 24 wt. % methyl acrylate, 8 wt. % glycidyl methacrylate, and 68 wt. % ethylene.
10. The film of claim 1 , wherein a seal strength of the film at 375° F. with sealing done between the heat-sealable surface layer and crystalline polyethylene terephthalate is at least 0.75 lb/in.
11. The film of claim 1 , wherein the core layer further comprises a substrate polyester layer, wherein the substrate polyester layer comprises silica antiblock particles.
12. The film of claim 1 , further comprising a secondary layer adjacent to the core layer, wherein the secondary layer is on the side of the core layer opposite to the heat-sealable laver, the secondary layer comprising poly(ethylene terephthalate) and silica antiblock particles.
13. A method of making the film of claim 1 , comprising coextruding the heat-sealable surface layer and the polyester-containing core layer.
14. The method of claim 13 , wherein the polyester-containing layer contains greater than 70 wt. % polyester.
15. The method of claim 13 , wherein the epoxy-containing thermoplastic polymer comprises residues of epoxy-containing monomers selected from glycidyl methacrylate, glycidyl acrylate, allyl glycidyl ether, 3,4-epoxy-1-butene, or and mixture of any two or more of such monomers.