Laminate film, package, and methods for oxygen-sensitive materials

US2019283370A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2019283370-A1
Application numberUS-201916295724-A
CountryUS
Kind codeA1
Filing dateMar 7, 2019
Priority dateMar 15, 2018
Publication dateSep 19, 2019
Grant date

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  1. Title

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  2. Abstract

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  5. First independent claim

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Abstract

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The present disclosure provides a laminate film for protecting oxygen-sensitive materials. The laminate film includes an ethylene vinyl alcohol polymer layer and an oxygen scavenging layer. The oxygen scavenging layer includes a first polyamide, a second polyamide, and a metal salt catalyst. The first polyamide includes a crystallizable polyamide homopolymer, a crystallizable polyamide copolymer, or a blend thereof. The second polyamide includes an m-xylylene diamine moiety, an isophthalic acid moiety, and a polyamide monomeric diacid precursor moiety.

First claim

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1 . A laminate film for protecting oxygen-sensitive materials, the laminate film comprising: an ethylene vinyl alcohol polymer layer; and an oxygen scavenging layer, the oxygen scavenging layer including a blend of: a first polyamide including a crystallizable polyamide homopolymer, a crystallizable polyamide copolymer, or a blend thereof; a second polyamide including: an m-xylylene diamine moiety; an isophthalic acid moiety; and a polyamide monomeric diacid precursor moiety; and a metal salt catalyst. 2 . The laminate film of claim 1 , wherein the second polyamide includes: 20 mol. % to 70 mol. % of the m-xylylene diamine moiety; 1 mol. % to 30 mol. % of the isophthalic acid moiety; and 20 mol. % to 60 mol. % of the polyamide monomeric diacid precursor moiety. 3 . The laminate film of claim 1 , wherein the first polyamide includes at least one of: Nylon 6, Nylon 66, Nylon 6/66, Nylon 66/6, Nylon MXD6, and Nylon 61, 6T. 4 . The laminate film of claim 1 , wherein the polyamide monomeric diacid precursor moiety includes an adipic acid moiety, and a molar ratio of the adipic acid moiety to the isophthalic acid moiety ranges from 98:1 to 88:12. 5 . The laminate film of claim 1 , wherein the first polyamide is from 2 wt. % to 90 wt. % of the oxygen scavenging layer and the second polyamide is from 10 wt. % to 98 wt. % of the oxygen scavenging layer. 6 . The laminate film of claim 1 , wherein the metal salt catalyst includes an acetate, stearate, propionate, hexanoate, octanoate, benzoate, salicylate or cinnamate of cobalt, copper, or ruthenium. 7 . The laminate film of claim 1 , further including a polyamide layer disposed on a first side of the ethylene vinyl alcohol layer, wherein the polyamide layer includes a third polyamide, and the oxygen scavenging layer is disposed on a second side of the ethylene vinyl alcohol layer opposite the first side of the ethylene vinyl alcohol layer. 8 . The laminate film of claim 7 , wherein the third polyamide includes at least one of: Nylon 6, Nylon 66, Nylon 6/66, Nylon 66/6, Nylon MXD6, and Nylon 61, 6T. 9 . The laminate film of claim 7 , further including: a first polyolefin layer bonded to a side of the polyamide layer opposite the ethylene vinyl alcohol polymer layer by a first tie layer; and a second polyolefin layer bonded to a side of the oxygen scavenging layer opposite the ethylene vinyl alcohol polymer layer by a second tie layer. 10 . A package for storing oxygen-sensitive materials, the package comprising: a laminate film separating an interior of the package from an exterior of the package, the laminate film including: an ethylene vinyl alcohol polymer layer; and an oxygen scavenging layer, the oxygen scavenging layer including a blend of: a first polyamide including a crystallizable polyamide homopolymer, a crystallizable polyamide copolymer, or a blend thereof; a second polyamide including: an m-xylylene diamine moiety; an isophthalic acid moiety; and a polyamide monomeric diacid precursor moiety; and a metal salt catalyst. 11 . The package of claim 10 , wherein the second polyamide includes: 20 mol. % to 70 mol. % of the m-xylylene diamine moiety; 1 mol. % to 30 mol. % of the isophthalic acid moiety; and 20 mol. % to 60 mol. % of the polyamide monomeric diacid precursor moiety. 12 . The package of claim 10 , wherein the laminate film further includes a polyamide layer disposed on a first side of the ethylene vinyl alcohol layer, wherein the polyamide layer includes a third polyamide, and the oxygen scavenging layer is disposed on a second side of the ethylene vinyl alcohol layer opposite the first side of the ethylene vinyl alcohol layer. 13 . The package of claim 12 , wherein the laminate film further includes: a first polyolefin layer bonded to a side of the polyamide layer opposite the ethylene vinyl alcohol polymer layer by a first tie layer; and a second polyolefin layer bonded to a side of the oxygen scavenging layer opposite the ethylene vinyl alcohol polymer layer by a second tie layer 14 . The package of claim 10 , wherein the package is a retort pouch. 15 . A method of making a sterilized package containing an oxygen-sensitive material, the method comprising: providing a package, the package including a laminate film including an ethylene vinyl alcohol polymer layer and an oxygen scavenging layer, the oxygen scavenging layer including a blend of a first polyamide including a crystallizable polyamide homopolymer, a crystallizable polyamide copolymer, or a blend thereof; and a second polyamide including an m-xylylene diamine moiety, an isophthalic acid moiety, and a polyamide monomeric diacid precursor moiety; and a metal salt catalyst; sealing the oxygen-sensitive material in the package; exposing the sealed package to a heat treatment to sterilize the package and the oxygen-sensitive material in the package; and cooling the sterilized package. 16 . The method of claim 15 , wherein the heat treatment is at a temperature from 50° C. to 150° C., a relative humidity of 90% to 100%, and a pressure of 600 Torr to 3,600 Torr absolute for a time from 30 to 60 minutes. 17 . The method of claim 15 , wherein exposing the sealed package to the heat treatment causes a loss of crystallinity in the ethylene vinyl alcohol polymer layer, and the oxygen scavenging layer scavenges oxygen passing through the laminate film at least until the ethylene vinyl alcohol polymer layer recrystallizes. 18 . The method of claim 15 , wherein the heat treatment activates the oxygen scavenging layer. 19 . The method of claim 15 , wherein the second polyamide includes 20 mol. % to 70 mol. % of the m-xylylene diamine moiety, 1 mol. % to 30 mol. % of the isophthalic acid moiety, and 20 mol. % to 60 mol. % of the polyamide monomeric diacid precursor moiety. 20 . The method of claim 15 , wherein an oxygen transmission rate measured per ASTM D3985 through the laminate film 24 hours after cooling the sterilized package is less than 0.3 cc/m 2 per day.

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What does patent US2019283370A1 cover?
The present disclosure provides a laminate film for protecting oxygen-sensitive materials. The laminate film includes an ethylene vinyl alcohol polymer layer and an oxygen scavenging layer. The oxygen scavenging layer includes a first polyamide, a second polyamide, and a metal salt catalyst. The first polyamide includes a crystallizable polyamide homopolymer, a crystallizable polyamide copolyme…
Who is the assignee on this patent?
Advansix Resins & Chemicals Llc
What technology area does this patent fall under?
Primary CPC classification B32B27/08. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Thu Sep 19 2019 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).