IP Library Granted Patent US 11,806,973
Granted Patent B2
US 11,806,973 · App. 17/670,658 · Granted Nov 7, 2023

Re-pulp able insulated paper products and methods of making and using the same

Inventors: Andrew Howard Field (Chicago, IL); Nigel J. Flynn (Flowery Branch, GA); Taylor Kopacka Leigh (Alpharetta, GA); Jason Lye (Atlanta, GA); Lon E. Pschigoda, II (Gobles, MI)
Assignee: Triple Point Innovations LLC
B32B29/08B32B7/12B32B29/005B32B29/06B32B2250/05B32B2250/26B32B2305/024B32B2307/304
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Quick Facts
Patent No.
US 11,806,973
App. No.
17/670,658
Granted
Nov 7, 2023
Kind
B2
Abstract

Insulated paper products are disclosed. Methods of making and using insulated paper products are also disclosed.

Claims (25)

1. An insulated paper product comprising:

two or more paper layers and insulating material, said insulating material comprising particles having an average particle size of less than about 1000 microns (μm), said particles comprising perlite, expanded perlite, perlite hollow microspheres, perlite microspheres, milled expanded perlite, perlite flakes, an aerogel, vermiculite, hollow expanded vermiculite, or any combination thereof, the two or more paper layers being bonded to one another so as to form an integral paper product,

wherein the integral paper product (i) has a non-uniform distribution of the insulating material therethrough and (ii) is repulpable,

wherein the insulating material has a material bulk density of less than 0.6 gram per cubic centimeter (g/cm 3 ), and

wherein one or more paper layers within said two or more paper layers comprise the insulating material.

2. The insulated paper product of claim 1 , wherein said insulated paper product comprises at least one layer in combination with said two or more paper layers with said at least one layer comprising said insulating material.

3. The insulated paper product of claim 1 , wherein the non-uniform distribution of insulating material within said integral paper product comprises (i) at least two paper layers with the insulating material therein and (ii) at least one paper layer substantially free of the insulating material.

4. The insulated paper product of claim 1 , wherein all paper layers within said integral paper product comprise the insulating material.

5. The insulated paper product of claim 1 , wherein the integral paper product comprises (i) a first linerboard layer comprising one or more first paper layers, (ii) a second linerboard layer comprising one or more second paper layers, and (iii) a fluted paper layer comprising one or more fluted paper layers positioned between the first linerboard layer and the second linerboard layer, and one or more of (i) said first linerboard layer, (ii) said second linerboard layer, and (iii) said fluted paper layer independently comprises insulating material therein or thereon, and

wherein said fluted paper layer provides pockets of air between said first linerboard layer and said second linerboard layer, and said pockets of air represent from about 20 to 80 volume percent of a total volume occupied by said fluted paper layer.

6. The insulated paper product of claim 1 , wherein the insulating material comprises the aerogel.

7. The insulated paper product of claim 1 , wherein the insulated paper product further comprises one or more non-paper layers, and the one or more non-paper layers comprise a gypsum layer, a clay-containing layer, a pigment-containing layer, a foam layer, a coating that provides a lower emissivity of the insulated paper product, bismuth oxychloride, mica, zinc oxide, sericite, gypsum, aluminum oxide, or any mixture or combination thereof.

8. The insulated paper product of claim 1 , wherein each paper layer that contains insulating material comprises from 15.0 weight percent (wt %) to 80.0 wt % fibers, and from about 85.0 wt % to about 20.0 wt % of the insulating material, based on a total weight of a given paper layer within the two or more paper layers.

9. The insulated paper product of claim 1 , wherein the insulated paper product is molded to form a three-dimensional object.

10. The insulated paper product of claim 1 , wherein said insulated paper product comprises a storage container, said storage container comprising a box, a cup, a mug, a flask, a thermos, a clam shell type box packaging for hot food, a corrugated paper product, a salad container for chilled food, a padded envelope, or a shipping container.

11. The insulated paper product of claim 1 , wherein said insulated paper product comprises a storage container, said storage container comprising a storage volume at least partially surrounded by one or more container walls, each of the one or more container walls comprising the two or more paper layers and the insulating material, and said insulated paper product further comprises a coating on (i) an inner surface, (ii) an outer surface, or (iii) both (i) and (ii) of the storage container, the coating having a thermal emissivity of less than 0.90 at 23° C., as measured using Thermal Emissivity Method #4.

12. A method of using the insulated paper product of claim 11 , said method comprising:

positioning an object within the storage volume of the storage container.

13. The insulated paper product of claim 1 , wherein said insulated paper product comprises an ash content of at least 37.9 wt %, based on a total weight of said insulated paper product as determined by test method TAPPI T 211 om-16 Ash in wood, pulp, paper and paperboard: combustion at 525° C.

14. An insulated paper product comprising:

two or more paper layers and insulating material, said insulating material comprising particles having an average particle size of less than about 1000 microns (μm), said particles comprising perlite, expanded perlite, perlite hollow microspheres, perlite microspheres, milled expanded perlite, perlite flakes, an aerogel, vermiculite, hollow expanded vermiculite, or any combination thereof, the two or more paper layers being bonded to one another so as to form an integral paper product,

wherein the integral paper product (i) has a non-uniform distribution of the insulating material therethrough and (ii) is repulpable, and

wherein said insulated paper product has an ash content of at least 37.9 wt %, based on a total weight of said insulated paper product as determined by test method TAPPI T 211 om-16 Ash in wood, pulp, paper and paperboard: combustion at 525° C.

15. The insulated paper product of claim 14 , wherein the insulating material comprises the aerogel.

16. The insulated paper product of claim 14 , wherein said insulated paper product comprises a storage container, said storage container comprising a box, a cup, a mug, a flask, a thermos, a clam shell type box packaging for hot food, a corrugated paper product, a salad container for chilled food, a padded envelope, or a shipping container.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 16, 2025
From: TRIPLE POINT INNOVATIONS LLC
To: ASTRA THERMAL SCIENCES LLC
Reel/Frame 072272/0206 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 14, 2022
From: FIELD, ANDREW HOWARD; FLYNN, NIGEL J.; LEIGH, TAYOR KOPACKA; LYE, JASON; PSCHIGODA, LON E.
To: OUTLIER SOLUTIONS, LLC
Reel/Frame 058999/0201 →
CHANGE OF NAME Recorded Feb 14, 2022
From: OUTLIER SOLUTIONS, LLC
To: TRIPLE POINT INNOVATIONS LLC
Reel/Frame 059100/0640 →
Continuity (3)
Division 16590224 · Oct 1, 2019
Provisional Application 62739735 · Oct 1, 2018
Related Publication 20220161535A1 · May 26, 2022
Cited By (1)
US 12,552,146