IP Library Granted Patent US 9,181,012
Granted Patent B2
US 9,181,012 · App. 14/006,485 · Granted Nov 10, 2015

Multilayer film made of recyclable thermoplastic material and container comprising said film

Inventor: Tonino Severini (Colleferro, IT)
Assignee: Plastic Relife SRL
B65D77/2024B32B27/08B32B27/18B32B27/36B65D1/0215B32B2250/02B32B2250/03B32B2250/40B32B2270/00B32B2272/00B32B2307/412B32B2307/7242B32B2307/7244B32B2439/00Y10T428/1379Y10T428/31786
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Quick Facts
Patent No.
US 9,181,012
App. No.
14/006,485
Granted
Nov 10, 2015
Kind
B2
Abstract

A multilayer film is described made of recyclable thermoplastic material comprising a layer (A) of unoriented amorphous PET combined with at least one barrier layer (B) which comprises unoriented amorphous PET, a salt of a transition metal and an oxidizable polyester-ether, in which the quantity of unoriented amorphous PET is at least 95% in weight of the total film and in which the permeability to oxygen is below 10 cc/m2/24 h/atm. The film is particularly suitable for the production of food-grade containers and packages with high barrier effect and high transparency which, at the same time, are fully recyclable in the same application.

Claims (35)

1. Multilayer film made of recyclable thermoplastic material comprising at least three layers, wherein at least one layer (A) of said three layers consists essentially of unoriented amorphous PET and is combined with at least a barrier layer (B) comprising unoriented amorphous PET, a salt of a transition metal and an oxidizable polyester-ether, wherein:

i) said unoriented amorphous PET layer (A) forms each of the external layers of said three-layers film and a central layer is formed by said barrier layer (B) (structure A/B/A); or

ii) said unoriented amorphous PET layer (A) forms the central layer of said three-layers film and each of said external layers is formed by said barrier layer B (structure B/A/B);

the weight ratio between said central layer and the sum of said external layers being >1, said multilayer film comprising at least 95% by wt. of unoriented amorphous PET and having a permeability to oxygen (Oxygen Transmission Rate “OTR”) of less than 10 cc/m 2 /24 h/atm.

2. Multilayer film according to claim 1 , wherein said central layer is at least 70% by wt. of the three-layers film.

3. Multilayer film according to claim 1 , wherein said central layer is at least 80% by wt. of the total three-layers film.

4. Multilayer film according to claim 1 , wherein in said barrier layer (B) said polyester-ether is present in an amount from 0.3% to 25% by wt. of the total composition of said barrier layer (B).

5. Multilayer film according to claim 4 , wherein said polyester-ether is present in said barrier layer (B) in an amount from 0.5% to 22% by wt. of the total composition of said barrier layer (B).

6. Multilayer film according to claim 4 , wherein said polyester-ether is present in said barrier layer (B) in an amount from 0.7% to 20% by wt. of the total composition of said barrier layer (B).

7. Multilayer film made of recyclable thermoplastic material comprising at least three layers, wherein at least one layer (A) of said three layers consists essentially of PET and at least one of said three layers consists of a barrier layer (B) comprising PET, a salt of a transition metal and an oxidizable polyester-ether, wherein:

i) said PET layer (A) forms each of the external layers of said three-layers film and a central layer is formed by said barrier layer (B) (structure A/B/A); or

ii) said PET layer (A) forms the central layer of said three-layers film and each of said external layers is formed by said barrier layer B (structure B/A/B);

the weight ratio between said central layer and the sum of said external layers being >1, said multilayer film comprising at least 95% by wt. of PET, having a permeability to oxygen (Oxygen Transmission Rate “OTR”) of less than 10 cc/m 2 /24 h/atm, having a Haze of less than 10 and being oriented.

8. Container comprising a multilayer film according to claim 1 .

9. Package comprising the container of claim 8 and a top film heat-sealable on said container.

10. Package according to claim 9 , wherein said top film comprises a PET layer in contact with said container.

11. Package according to claim 10 , wherein the amount of PET is >93% by wt. and said top film has a permeability to oxygen (Oxygen Transmission Rate “OTR”) of less than 10 cc/m 2 /24 h/atm.

12. Package according to claim 11 , wherein said top film is a three-layers, wherein at least one layer (A) of said three layers consists essentially of PET and at least one of said three layers consists of a barrier layer (B) comprising PET, a salt of a transition metal and an oxidizable polyester-ether, wherein:

i) said PET layer (A) forms each of the external layers of said three-layers film and a central layer is formed by said barrier layer (B) (structure A/B/A); or

ii) said PET layer (A) forms the central layer of said three-layers film and each of said external layers is formed by said barrier layer B (structure B/A/B);

the weight ratio between said central layer and the sum of said external layers being >1, said multilayer film comprising at least 95% by wt. of PET, having a permeability to oxygen (Oxygen Transmission Rate “OTR”) of less than 10 cc/m 2 /24 h/atm, having a Haze of less than 10 and being oriented film.

13. Process for producing a multilayer film comprising the following:

a) milling a raw material comprising packages and/or shaped articles comprising multilayer films as defined in claim 1 ;

b) feeding the milled raw material without any drying step to a co-extrusion line to produce at least a three-layer film;

c) extruding the material from a main extruder to form the central layer of a multilayer film and simultaneously removing water through vent holes in the extruder, said holes being in communication with a vacuum pump;

d) extruding materials forming two or more outer layers from two or more co-extruders;

e) delivering said materials from said main extruder and said co-extruder to a single extrusion head to form a multilayer film in which the single layers are thermally bonded one to the other without use of adhesives or tie layers;

f) cooling said multilayer film without imparting any orientation.

14. Process according to claim 13 , wherein said vacuum in said vent holes of said main extruder is of less than 50 mbar, preferably less than 10 mbar.

15. Package according to claim 10 , wherein the amount of PET is >93% by wt. and said top film has a permeability to oxygen (Oxygen Transmission Rate “OTR”) of less than 7 cc/m 2 /24 h/atm.

16. Package according to claim 10 , wherein the amount of PET is >93% by wt. and said top film has a permeability to oxygen (Oxygen Transmission Rate “OTR”) of less than 5 cc/m 2 /24 h/atm.

17. Package according to claim 10 , wherein the amount of PET is >93% by wt. and said top film has a permeability to oxygen (Oxygen Transmission Rate “OTR”) of less than 3 cc/m 2 /24 h/atm.

18. Container comprising a multilayer film according to claim 2 .

19. Container comprising a multilayer film according to claim 3 .

20. Container comprising a multilayer film according to claim 4 .

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 9, 2019
From: PLASTIC RELIFE S.R.L.
To: POINT PLASTIC S.R.L.
Reel/Frame 050012/0906 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 20, 2013
From: SEVERINI, TONINO
To: PLASTIC RELIFE S.R.L.
Reel/Frame 031250/0945 →
Priority Claims (1)
IT MI2011A0452 · Mar 22, 2011 · national
Continuity (1)
Related Publication 20140008368A1 · Jan 9, 2014