IP Library › Granted Patent US 10,655,277
Granted Patent B2
US 10,655,277 · App. 15/776,925 · Granted May 19, 2020

Biopolymer coating for compostable paperboard packaging

Inventors: Rahul Bhardwaj (Glen Allen, VA); Chitai C. Yang (Mechanicsville, VA); Chester E. Alkiewicz (Glen Allen, VA)
Assignee: WestRock MWV, LLC
D21H27/18B32B7/04B32B7/12B32B27/10B32B27/18B32B27/22B32B27/308B32B27/36B65D65/42B65D65/466D21H19/40D21H19/42D21H19/56D21H19/62D21H19/80D21H19/82D21H27/10D21H27/30B32B2250/02B32B2250/03B32B2250/40B32B2264/10B32B2264/102B32B2264/104B32B2264/107B32B2307/31B32B2307/7163B32B2307/732B32B2307/748B32B2439/40
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Quick Facts
Patent No.
US 10,655,277
App. No.
15/776,925
Granted
May 19, 2020
Kind
B2
Abstract

A coating for paperboard includes polylactic acid and an inorganic material. The inorganic material may be talc. The presence of the talc has a beneficial effect on extrusion processing behavior including lower melt temperature, lower head pressure, and lower motor load. Additionally, the presence of talc reduces edge weave and neck-in during extrusion coating processes.

Claims (31)

1. A paperboard structure comprising:

a paperboard substrate having a first surface and an opposed second surface; and

a heat sealable biopolymer coating applied by extrusion or co-extrusion to at least one of the first and second surfaces;

wherein the heat sealable biopolymer coating comprises an inorganic melt curtain stabilizer,

wherein the heat sealable biopolymer coating optionally further comprises an adhesion-promoting polymer, and

wherein the thickness of the heat sealable biopolymer coating is from 0.00025 to 0.005 inches.

2. The paperboard structure of claim 1 , wherein the melt curtain stabilizer comprises at least one of calcium carbonate, talc, mica, diatomaceous earth, silica, clay, kaolin, wollastonite, pumice, zeolite, and ceramic spheres.

3. The paperboard structure of claim 1 , wherein the heat sealable biopolymer coating comprises a biodegradable polymer.

4. The paperboard structure of claim 1 , wherein the heat sealable biopolymer coating comprises a biodegradable polyester.

5. The paperboard structure of claim 4 , wherein the biodegradable polyester comprises polylactic acid.

6. The paperboard structure of claim 1 , wherein the heat sealable biopolymer comprises the adhesion-promoting polymer, and wherein the adhesion-promoting polymer comprises at least one of aliphatic-aromatic copolyester polybutylene succinate, polyhydroxyalkanoate, aliphatic-polyester, aliphatic-aromatic polyester, acrylic polymer, elastomer, and plasticizer.

7. The paperboard structure of claim 1 , wherein the heat sealable biopolymer coating is one of a monolayer blend and a co-extruded multilayer blend.

8. The paperboard structure of claim 1 , wherein the melt curtain stabilizer is from 1% to 25% by weight of the heat sealable biopolymer coating.

9. The paperboard structure of claim 8 , wherein the melt curtain stabilizer is from 2% to 18% by weight of the heat sealable biopolymer coating.

10. The paperboard structure of claim 9 , wherein the melt curtain stabilizer is from 4% to 12% by weight of the heat sealable biopolymer coating.

11. The paperboard structure of claim 1 , having a polymer to paper heat seal with at least 10% fiber tear when sealed with a heat seal bar temperature of 325° F. under a 60 psi seal pressure at a 1.5 sec dwell time.

12. The paperboard structure of claim 1 , having a polymer to paper heat seal with at least 40% fiber tear when sealed with a heat seal bar temperature of 350° F. under 60 psi seal pressure at a 1.5 sec dwell time.

13. The paperboard structure of claim 1 , having a polymer to paper heat seal with at least 70% fiber tear when sealed with a heat seal bar temperature of 375° F. under 60 psi seal pressure at a 1.5 sec dwell time.

14. The paperboard structure of claim 1 , wherein the paperboard structure meets the requirements of ASTM D6868-11 Standard Specification for compostability.

15. The paperboard structure of claim 1 , wherein the thickness of the heat sealable biopolymer coating is from 0.00033 to 0.0025 inches.

16. The paperboard structure of claim 1 , wherein the thickness of the heat sealable biopolymer coating is from 0.0005 to 0.0015 inches.

17. The paperboard structure of claim 1 , wherein the heat sealable biopolymer coating comprises both the inorganic melt curtain stabilizer and the adhesion-promoting polymer.

18. A paperboard structure comprising:

a paperboard substrate having a first surface and an opposed second surface; and

a heat sealable biopolymer coating applied by extrusion or co-extrusion to at least one of the first and second surfaces;

wherein the heat sealable biopolymer coating is comprised of polylactic acid, an adhesion-promoting polymer, and an inorganic melt curtain stabilizer,

wherein the inorganic melt curtain stabilizer is from 2% to 12% by weight of the heat sealable biopolymer coating, and

wherein the thickness of the heat sealable biopolymer coating is from 0.00025 to 0.005 inches.

19. The paperboard structure of claim 18 , wherein the inorganic melt curtain stabilizer comprises at least one of calcium carbonate, talc, mica, diatomaceous earth, silica, clay, kaolin, wollastonite, pumice, zeolite, and ceramic spheres.

20. The paperboard structure of claim 18 , wherein the heat sealable biopolymer coating is one of a monolayer blend and a co-extruded multilayer blend.

21. The paperboard structure of claim 18 , wherein the adhesion-promoting polymer comprises at least one of aliphatic-aromatic copolyester, polybutylene succinate, polyhydroxyalkanoate, aliphatic-polyester, aliphatic-aromatic polyester, acrylic polymer, elastomer, and plasticizer.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 5, 2018
From: BHARDWAJ, RAHUL; YANG, CHITAI C.; ALKIEWICZ, CHESTER E.
To: WESTROCK MWV, LLC
Reel/Frame 045990/0544 →
Continuity (2)
Provisional Application 62259872 · Nov 25, 2015
Related Publication 20180327976A1 · Nov 15, 2018
Cited By (1)
US 12,305,337