IP Library Granted Patent US 9,844,927
Granted Patent B2
US 9,844,927 · App. 15/100,938 · Granted Dec 19, 2017

Multi-layered container

Inventors: Tomonori Kato (Kanagawa, JP); Nobuhide Tsunaka (Kanagawa, JP); Takafumi Oda (Kanagawa, JP)
Assignee: Mitsubishi Gas Chemical Company, Inc.
B32B27/08B32B27/18B32B27/20B32B27/32B32B27/34B32B27/36B65D81/266B29C51/002B29C51/14B32B2250/03B32B2307/724B32B2307/7242B32B2439/60B32B2439/70B32B2439/80
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Quick Facts
Patent No.
US 9,844,927
App. No.
15/100,938
Granted
Dec 19, 2017
Kind
B2
Abstract

A multilayer container having a layer configuration of 3 or more layers including, as layered in that order from an inner layer to an outer layer, an oxygen-permeable layer containing an oxygen-permeable resin as the main component thereof, an oxygen-absorbing adhesive layer containing, as the main components thereof, an oxygen-absorbing resin composition containing a deoxidant composition and a thermoplastic resin and an adhesive resin, and a gas-barrier layer containing a gas-barrier resin as the main component thereof, wherein the gas-barrier resin is a polyamide resin including a diamine unit containing a metaxylylenediamine unit in an amount of 70 mol % or more and a dicarboxylic acid unit containing 75 to 96 mol % of an α,ω-linear aliphatic dicarboxylic acid unit having 4 to 20 carbon atoms and 25 to 4 mol % of an aromatic dicarboxylic acid unit, the content of the deoxidant composition in the oxygen-absorbing adhesive layer is 5 to 50% by mass relative to 100% by mass of the material constituting the oxygen-absorbing adhesive layer, the content of the adhesive resin is 20 to 70% by mass relative to 100% by mass of the material constituting the oxygen-absorbing adhesive layer, and the thickness of the oxygen-absorbing adhesive layer is 10 to 30% of the total thickness of the multilayer container.

Claims (14)

1. A multilayer container having a layer configuration of 3 or more layers comprising, as layered in that order from an inner layer to an outer layer, an oxygen-permeable layer (A) containing an oxygen-permeable resin as the main component thereof, an oxygen-absorbing adhesive layer (B) containing, as the main components thereof, an oxygen-absorbing resin composition (b1) containing a deoxidant composition (b1-i) and a thermoplastic resin (b1-ii) and an adhesive resin (b2), and a gas-barrier layer (C) containing a gas-barrier resin as the main component thereof, wherein:

the gas-barrier resin is a polyamide resin (X) including a diamine unit containing a metaxylylenediamine unit in an amount of 70 mol % or more and a dicarboxylic acid unit containing 75 to 96 mol % of an α,ω-linear aliphatic dicarboxylic acid unit having 4 to 20 carbon atoms and 25 to 4 mol % of an aromatic dicarboxylic acid unit,

the content of the deoxidant composition (b1-i) in the oxygen-absorbing adhesive layer (B) is 5 to 50% by mass relative to 100% by mass of the material constituting the oxygen-absorbing adhesive layer (B), and the content of the adhesive resin (b2) is 20 to 70% by mass relative to 100% by mass of the material constituting the oxygen-absorbing adhesive layer (B), and

the thickness of the oxygen-absorbing adhesive layer (B) is 10 to 30% of the total thickness of the multilayer container.

2. The multilayer container according to claim 1 , wherein an oxygen-absorbing adhesive layer (D) containing, as the main components thereof, an oxygen-absorbing resin composition (d1) containing a deoxidant composition (d1-i) and a thermoplastic resin (d1-ii) and an adhesive resin (d2) is layered as an outer layer of the gas-barrier layer (C), and a protective layer (E) containing a thermoplastic resin as the main component thereof is layered as an outer layer of the oxygen-absorbing adhesive layer (D).

3. The multilayer container according to claim 1 , wherein the thickness of the oxygen-permeable layer (A) is 10 to 40% of the total thickness of the multilayer container.

4. The multilayer container according to claim 1 , wherein the thickness of the gas-barrier layer (C) is 2 to 20% of the total thickness of the multilayer container.

5. The multilayer container according to claim 1 , wherein the deoxidant composition (b1-i) for use in the oxygen-absorbing adhesive layer (B) is a deoxidant composition containing an iron powder as the main component thereof.

6. The multilayer container according to claim 5 , wherein the maximum particle size of the iron powder is 0.5 mm or less, and the mean particle size thereof is 0.3 mm or less.

7. The multilayer container according to claim 1 , wherein the thermoplastic resin (b1-ii) for use in the oxygen-absorbing adhesive layer (B) is a resin containing polypropylene as the main component thereof.

8. The multilayer container according to claim 1 , wherein the thermoplastic resin (b1-ii) for use in the oxygen-absorbing adhesive layer (B) is a resin containing polypropylene as the main component thereof, and having received thermal history once or more in an extruder at a temperature not lower than the melting point of the resin.

9. The multilayer container according to claim 1 , wherein the oxygen-permeable resin for use in the oxygen-permeable layer (A) is a polypropylene resin.

10. The multilayer container according to claim 2 , wherein the thermoplastic resin for use in the protective layer (E) is at least one selected from the group consisting of a polypropylene resin, a polyamide resin and a polyester resin.

11. The multilayer container according to claim 2 , wherein the thickness of the protective layer (E) is 15 to 60% of the total thickness of the multilayer container.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 2, 2016
From: KATO, TOMONORI; TSUNAKA, NOBUHIDE; ODA, TAKAFUMI
To: MITSUBISHI GAS CHEMICAL COMPANY, INC.
Reel/Frame 038783/0699 →
Priority Claims (1)
JP 2013-251829 · Dec 5, 2013 · national
Continuity (1)
Related Publication 20160303834A1 · Oct 20, 2016