IP Library Granted Patent US 10,926,939
Granted Patent B2
US 10,926,939 · App. 16/658,756 · Granted Feb 23, 2021

Method of making an insulation material and an insulated mailer

Inventors: Alan B. Collison (Pierce, NE); Reid Borgman (Norfolk, NE)
Assignee: MP Global Products, L.L.C.
B65D81/3823B32B7/14B32B27/32B32B29/005B32B29/02B32B29/08B65D5/0227B65D27/00B65D27/005B65D81/3858B32B2260/028B32B2260/046B32B2398/20B65D2565/384B65D2565/385Y02W30/80Y02W90/10
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Quick Facts
Patent No.
US 10,926,939
App. No.
16/658,756
Granted
Feb 23, 2021
Kind
B2
Abstract

A method and system for producing an insulated mailer and an insulated box having an insulative paper fiber pad substructure with a density of less than about 10 pounds per cubic foot. The insulative paper fiber pad has entangled reinforcement fibers. A method of forming an insulative paper fiber pad using recycling-compatible or water soluble adhesive and paper layers is provided.

Claims (28)

1. A repulpable insulation material comprising:

a batt formed of a mixture of cellulose fibers and thermoplastic binder fibers distributed substantially randomly within the cellulose fibers, the thermoplastic binder fibers making up about 0.5% to 25% by weight of the batt, the batt having a thickness that is greater than or equal to about 1/16 of an inch, the thermoplastic binder fibers being adhered to the cellulose fibers, wherein subjecting the repulpable insulation material to a repulpability test produces greater than 85% fiber yield.

2. The repulpable insulation material of claim 1 wherein the thermoplastic binder fibers have a length of less than about 24 mm.

3. The repulpable insulation material of claim 1 wherein the thermoplastic binder fibers are meltable PE/PP bi-component thermoplastic binder fibers.

4. The repulpable insulation material of claim 1 wherein the thermoplastic binder fibers make up less than about 10% by weight of the batt.

5. The repulpable insulation material of claim 1 wherein the cellulose fibers include at least one of paper fibers and cardboard fibers.

6. The repulpable insulation material of claim 1 wherein the repulpable insulation material has a weight within a range from 1000 GSM to 1600 GSM.

7. A method for producing an insulation material, the method comprising:

mixing cellulose reinforcement fibers with thermoplastic binder fibers to distribute the thermoplastic binder fibers substantially randomly within the cellulose reinforcement fibers to form a mixture; and

applying heat to the mixture to melt the thermoplastic binder fibers to bind the thermoplastic binder fibers to the cellulose reinforcement fibers to form a batt, the thermoplastic binder fibers making up about 0.5% to about 25% by weight of the batt, the batt having a thickness that is greater than or equal to about 1/16 of an inch, wherein subjecting the insulation material to a repulpability test produces a fiber yield of greater than 85%.

8. The method of claim 7 wherein the thermoplastic binder fibers are meltable PE/PP bi-component thermoplastic binder fibers.

9. The method of claim 7 wherein the thermoplastic binder fibers have a length that is less than about 24 mm.

10. The method of claim 7 wherein the cellulose reinforcement fibers include at least one of paper fibers and cardboard fibers.

11. A repulpable insulation liner comprising:

a first paper layer; and

a cellulose fiber pad coupled to the first paper layer, the cellulose fiber pad having cellulose reinforcement fibers interlocked with thermoplastic binder fibers distributed substantially randomly within the cellulose reinforcement fibers, the thermoplastic binder fibers making up about 0.5% to 25% by weight of the cellulose fiber pad, the cellulose fiber pad having a thickness that is greater than or equal to about 1/16 of an inch, wherein subjecting the repulpable insulation liner to a repulpability test produces greater than 85% fiber yield.

12. The repulpable insulation liner of claim 11 wherein the thermoplastic binder fibers are meltable PE/PP bi-component thermoplastic binder fibers.

13. The repulpable insulation liner of claim 11 wherein the thermoplastic binder fibers have a length less than about 24 mm.

14. The repulpable insulation liner of claim 11 further comprising an adhesive layer disposed between the first paper layer and the cellulose fiber pad, wherein the adhesive layer is at least one of recycling-compatible and water soluble.

15. The repulpable insulation liner of claim 11 wherein the repulpable insulation liner has a weight within a range from 1000 GSM to 1600 GSM.

16. The repulpable insulation liner of claim 11 wherein the thermoplastic binder fibers have a plurality of different lengths.

17. The repulpable insulation liner of claim 11 further comprising a second paper layer coupled to at least one of the cellulose fiber pad and the first paper layer.

18. The repulpable insulation liner of claim 17 wherein:

the second paper layer is coupled to the first paper layer; and

the cellulose fiber pad is encapsulated between the first and second paper layers.

19. The repulpable insulation liner of claim 17 wherein the first paper layer is coupled to the cellulose fiber pad on a first side of the cellulose fiber pad, and the second paper layer is coupled to the cellulose fiber pad on a second side of the cellulose fiber pad that is opposite of the first side.

20. The repulpable insulation liner of claim 11 wherein the cellulose reinforcement fibers include at least one of paper fibers and cardboard fibers.

21. The repulpable insulation liner of claim 11 wherein the thermoplastic binder fibers make up less than about 10% by weight of the cellulose fiber pad.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 10, 2026
From: MP GLOBAL PRODUCTS, LLC
To: PREGIS EVERTEC, LLC
Reel/Frame 075584/0420 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 15, 2020
From: COLLISON, ALAN B.; BORGMAN, REID
To: MP GLOBAL PRODUCTS, L.L.C.
Reel/Frame 051520/0799 →
Continuity (5)
Continuation 15677738 · Aug 15, 2017
Provisional Application 62437365 · Dec 21, 2016
Provisional Application 62419894 · Nov 9, 2016
Provisional Application 62375555 · Aug 16, 2016
Related Publication 20200047976A1 · Feb 13, 2020
Cited By (16)
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