IP Library Granted Patent US 11,827,397
Granted Patent B2
US 11,827,397 · App. 17/350,424 · Granted Nov 28, 2023

Multilayer paperboard pouch and method of making the same using conventional bag-making equipment (CBME)

Inventors: Geoffrey Nobes (Collierville, TN); Ernest Pasteur (Bartlett, TN)
Assignee: EVERGREEN PACKAGING LLC
B65B3/02B65B3/04B65B9/06B65B51/26B65B61/06D21H19/22D21H19/30D21H19/824D21H27/10B65D75/5805B65D75/5883
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Quick Facts
Patent No.
US 11,827,397
App. No.
17/350,424
Granted
Nov 28, 2023
Kind
B2
Abstract

An improved paperboard pouch comprising a multilayer substrate and a method of making the same is provided. The multilayer paperboard pouch comprises an outer surface and an inner surface, wherein one of the surfaces is defined as a food contact surface. In the depicted embodiment, the properties of the polymer layer are chosen to provide adequate mechanical and barrier protection to the paper-based pouch formed on the conventional pouch-forming equipment. A method of manufacturing a multilayer paperboard pouch using conventional bag-making equipment (“CBME”) running at normal production speed for making standard plastic pouches is also provided. First, a paper is extrusion-coated and then the CBME is configured with a feeder for feeding an extrusion-coated paper intermittently for a length along a feeding path; a cutter disposed at a position predetermined for cutting one of the layers of the coated paper and forming a first side gusset, a second side gusset and a bottom gusset portions and for folding each of a first side gusset, a second side gusset and a bottom gusset portions into halves along a center line extending longitudinally thereof; and a sealer for sealing the layers of the polymer with the layers of the bottom gusset portion and the layers of the first and second gusset portions, respectively to form the finished multilayer paperboard pouch ready for sale and distribution to various retailers. It is to be noted that in the depicted embodiment various closure constructions and mechanism can be used for heat sealing the finished pouches.

Claims (72)

1. A method of manufacturing a multilayer paperboard pouch using conventional bag-making equipment (“CBME”) running at normal production speed for the making of standard plastic bags, the method comprising the steps of:

providing a feeder for feeding a polymer-coated laminated paper into the CBME;

moving the polymer-coated laminated paper through the CBME, wherein the front and back sides of the polymer-coated laminated paper are pressed between a set of rollers positioned at a pre-determined distance along the CBME;

folding the polymer-coated laminated paper and forming one or more gussets in the folded polymer-coated laminated paper; and

configuring a cutter disposed at a pre-determined location along the CBME to cut the polymer-coated laminated paper having one or more gussets to form a first side portion containing a first side portion gusset, a second side portion containing a second side portion gusset and a bottom portion containing a bottom portion gusset, wherein the first and second side portions are attached to the bottom portion via bottom edges; and

using a sealer positioned at a pre-determined location along the CBME for sealing the first and second side portions at a top edge to form a multilayer paperboard pouch;

wherein the polymer is an LDPE polymer blend having a composition of metallocene catalyzed LLDPE in amounts of 25-100%/wt. of LLDPE; and

wherein the polymer coated paper has a tensile strength of at least 40 MPa and 16 MPa in the machine direction and the cross direction respectively; and

wherein the finished multilayer paperboard pouch has a burst strength and side seal strength of at least 4.9 psi and 2800 gf/in, respectively; and

wherein the CBME is further configured to perform the steps of:

folding each of the first and second side portions into halves along a center line extending longitudinally thereof;

connecting a pair of first side edges with each other by the first side portion and a pair of second side edges with each other by the second side portion; and

folding the bottom portion into halves along a center line extending longitudinally thereof such that the bottom edges being connected with each other by the bottom portion.

2. The method of claim 1 , further comprising extruding a polymer coating onto a paper stock to create the polymer-coated laminated paper.

3. The method of claim 2 , wherein the polymer-coated laminated paper is formed by extruding a polymer coating onto a paper stock.

4. The method of claim 1 , wherein the polymer-coated laminated paper comprises a single polymer layer.

5. The method of claim 1 , wherein the polymer-coated laminated paper comprises a plurality of polymer layers.

6. The method of claim 1 , wherein the first side portion is disposed between and extended along the pair of first side edges; and

the second side portion is disposed between and extended along the pair of second side edges; and

the bottom portion is disposed between and extended along a pair of bottom edges.

7. The method of claim 1 , wherein the CBME further comprises a sealer disposed downstream of the feeder for sealing layers of the first and second side portions along said first and second side edges, respectively.

8. The method of claim 1 , wherein the multilayer pouch is a flat-bottom pouch having a zipper closure mechanism.

9. The method of claim 1 , wherein the multilayer pouch is a flat-bottom pouch with a pocket tear zipper closure mechanism.

10. A method of manufacturing a multilayer paperboard pouch using conventional bag-making equipment (“CBME”) running at normal production speed for the making of standard plastic bags, the method comprising the steps of:

providing a feeder for feeding a polymer-coated laminated paper into the CBME;

moving the polymer-coated laminated paper through the CBME, wherein the front and back sides of the polymer-coated laminated paper are pressed between a set of rollers positioned at a pre-determined distance along the CBME;

folding the polymer-coated laminated paper and forming one or more gussets in the folded polymer-coated laminated paper; and

configuring a cutter disposed at a pre-determined location along the CBME to cut the polymer-coated laminated paper having one or more gussets to form a first side portion containing a first side portion gusset, a second side portion containing a second side portion gusset and a bottom portion containing a bottom portion gusset, wherein the first and second side portions are attached to the bottom portion via bottom edges; and

using a sealer positioned at a pre-determined location along the CBME for sealing the first and second side portions at a top edge to form a multilayer paperboard pouch; and

wherein the CBME is further configured for:

loading multiple paperboard pouches;

segregating and opening each individual multilayer paperboard pouch;

filling each individual pouch to a pre-determined weight or volume; and

resealing the top of the individual pouch wherein each finished and filled individual pouch has a burst strength and a side seal strength of at least 5.3 psi and 3000 gf/in, respectively.

11. The method of claim 10 , wherein the finished pouch is a flat-bottom multilayer pouch without a zipper closure mechanism.

12. A method of manufacturing a multilayer paperboard pouch using conventional bag-making equipment (“CBME”) running at normal production speed for the making of standard plastic bags, the method comprising the steps of:

feeding a polymer-coated laminated paper into the CBME;

moving the polymer-coated laminated paper through the CBME, wherein the front and back sides of the polymer-coated laminated paper are pressed between a set of rollers positioned at a pre-determined distance along the CBME;

folding the polymer-coated laminated paper and forming one or more gussets in the folded polymer-coated laminated paper; and

cutting the polymer-coated laminated paper at a pre-determined location along the CBME to cut the polymer-coated laminated paper having one or more gussets and form a first side portion containing a first side portion gusset, a second side portion containing a second side portion gusset and a bottom portion containing a bottom portion gusset, wherein the first and second side portions are attached to the bottom portion via bottom edges; and

sealing the first and second side portions at a top edge to form a multilayer paperboard pouch; and

wherein the CBME is further configured to perform the steps of:

folding each of the first and second side portions into halves along a center line extending longitudinally thereof;

connecting a pair of first side edges with each other by the first side portion and a pair of second side edges with each other by the second side portion; and

folding the bottom gusset portion into halves along a center line extending longitudinally thereof such that the bottom edges being connected with each other by the bottom gusset portion.

13. The method of claim 12 , further comprising extruding a polymer coating onto a paper stock to create the polymer-coated laminated paper.

14. The method of claim 13 , wherein the polymer-coated laminated paper is formed by extruding a polymer coating onto a paper stock.

15. The method of claim 12 , wherein the polymer-coated laminated paper comprises a single polymer layer.

16. The method of claim 12 , wherein the polymer-coated laminated paper comprises a plurality of polymer layers.

17. The method of claim 12 , wherein the polymer is an LDPE polymer blend having a composition of metallocene catalyzed LLDPE in amounts of 25-100%/wt. of LLDPE; and

wherein the polymer-coated paper has a tensile strength of at least 40 MPa and 16 MPa in the machine direction and the cross direction, respectively; and

wherein the finished multilayer paperboard pouch has a burst strength and side seal strength of at least 4.9 psi and 2,800 gf/in, respectively.

18. The method of claim 12 , wherein the first side portion is disposed between and extended along the pair of first side edges; and

the second side portion is disposed between and extended along the pair of second side edges; and

the bottom portion is disposed between and extended along a pair of bottom edges.

19. The method of claim 12 , wherein the CBME further comprises a sealer disposed downstream of the feeder for sealing layers of the first and second side portions along said first and second side edges, respectively.

20. The method of claim 12 , wherein the polymer-coated paper has a tensile strength of at least 39 MPa and 15 MPa in the machine direction and the cross direction, respectively; and

the finished multilayer paperboard pouch has a burst strength and a side seal strength of at least 5.9 psi and 2,000 gf/in, respectively.

21. A method of manufacturing a multilayer paperboard pouch using conventional bag-making equipment (“CBME”) running at normal production speed for the making of standard plastic bags, the method comprising the steps of:

feeding a polymer-coated laminated paper into the CBME;

moving the polymer coated laminated paper through the CBME, wherein the front and back sides of the polymer-coated laminated paper are pressed between a set of rollers positioned at a pre-determined distance along the CBME;

folding the polymer-coated laminated paper and forming one or more gussets in the folded polymer-coated laminated paper; and

cutting the polymer-coated laminated paper at a pre-determined location along the CBME to cut the polymer-coated laminated paper having one or more gussets and form a first side portion containing a first side portion gusset, a second side portion containing a second side portion gusset and a bottom portion containing a bottom portion gusset, wherein the first and second side portions are attached to the bottom portion via bottom edges; and

sealing the first and second side portions at a top edge to form a multilayer paperboard pouch; and

wherein the method further comprising the steps of:

loading multiple paperboard pouches;

segregating and opening each individual multilayer paperboard pouch;

filling each individual pouch to a pre-determined weight or volume; and

resealing the top of the individual pouch wherein each finished and filled individual pouch has a burst strength and a side seal strength of at least 5.3 psi and 3,000 gf/in, respectively.

22. The method of claim 21 , wherein the finished pouch is a flat-bottom multilayer pouch without a zipper closure mechanism.

23. The method of claim 21 , wherein the multilayer pouch is a flat-bottom pouch having a zipper closure mechanism.

24. The method of claim 21 , wherein the multilayer pouch is a flat-bottom pouch with a pocket tear zipper closure mechanism.

Assignments (3)
SECURITY INTEREST Recorded Apr 2, 2025
From: BLUE RIDGE PAPER PRODUCTS LLC; EVERGREEN PACKAGING LLC; FABRI-KAL LLC; PACTIV LLC; PACTIV PACKAGING INC.
To: WILMINGTON TRUST, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 070705/0859 →
CORRECTIVE ASSIGNMENT TO CORRECT THE THE SPELLING OF ASSIGNEE NAME AND EXECUTION DATE FOR INVENTOR ERNEST PASTEUR. PREVIOUSLY RECORDED AT REEL: 060080 FRAME: 0123. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jun 14, 2022
From: NOBES, GEOFFREY; PASTEUR, ERNEST
To: PACTIV EVERGREEN INC.
Reel/Frame 060878/0369 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 2, 2022
From: NOBES, GEOFFREY; PASTEUR, ERNEST
To: PACTIVE EVERGREEN INC.
Reel/Frame 060080/0123 →