IP Library Granted Patent US 11,287,079
Granted Patent B2
US 11,287,079 · App. 16/746,149 · Granted Mar 29, 2022

Self-healing barrier films for vacuum insulation panels

Inventors: Kaushik Biswas (Knoxville, TN); Pengfei Cao (Knoxville, TN); Tomonori Saito (Knoxville, TN)
Assignee: UT-BATTELLE, LLC
F16L59/065B32B3/04B32B5/16B32B5/18B32B27/065B32B27/12B32B27/36B32B37/185B32B38/1858C08G59/4042C08G59/66C09D167/02F25D23/065B32B2250/40B32B2255/10B32B2255/205B32B2255/26B32B2255/28B32B2266/06B32B2307/304B32B2307/7246B32B2307/762B32B2367/00F25D2201/14
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Quick Facts
Patent No.
US 11,287,079
App. No.
16/746,149
Granted
Mar 29, 2022
Kind
B2
Abstract

A self-healing vacuum insulation panel and a method of manufacture are provided. The vacuum insulation panel includes a self-healing, multi-layer barrier film including a separator between a curing agent and a curable resin. Upon damage to the separator, the curing agent penetrates the separator due to a pressure differential across the barrier film and reacts with the curable resin to seal any cuts or punctures. The curing agent and the curable resin can be selected to have long term stability and a short reaction time with no need for external stimuli. As a result, the multi-layer barrier film can retain the internal vacuum and maintain a desirably low thermal conductivity using low-cost, commercially available epoxies and curing agents.

Claims (23)

1. A self-healing vacuum insulation panel comprising:

an insulating core material; and

a gas-impermeable barrier envelope surrounding the insulating core material and forming an enclosure to maintain an applied vacuum therein,

wherein the gas-impermeable barrier envelope includes a curing agent, a curable resin, and a separator therebetween, such that a perforation of the separator causes the curing agent to react with the curable resin to seal the gas-impermeable barrier envelope, and wherein the curing agent and the curable resin each define a layer including a thickness of between 5 μm and 200 μm inclusive.

2. The self-healing vacuum insulation panel of claim 1 wherein the curing agent is disposed exterior to the separator and the curable resin is disposed interior to the separator.

3. The self-healing vacuum insulation panel of claim 1 wherein the curing agent includes an imine-functional group and wherein the curable resin includes an epoxide-functional group.

4. The self-healing vacuum insulation panel of claim 1 wherein the curing agent includes a thiol-functional group and wherein the curable resin includes an epoxide-functional group.

5. The self-healing vacuum insulation panel of claim 1 wherein the curing agent and the curable resin each include a slurry applied to opposing sides of the separator.

6. The self-healing vacuum insulation panel of claim 1 wherein the insulating core material comprises insulating powders or insulating fibers.

7. The self-healing vacuum insulation panel of claim 1 wherein the gas-impermeable barrier envelope further includes an outer protective layer positioned adjacent of the curing agent.

8. The self-healing vacuum insulation panel of claim 7 wherein the gas-impermeable barrier envelope further includes an inner protective layer positioned adjacent of the curable resin.

9. The self-healing vacuum insulation panel of claim 1 wherein the separator includes metalized polyethylene terephthalate.

10. A self-healing vacuum insulation panel comprising:

an insulating core material; and

a gas-impermeable barrier envelope surrounding the insulating core material and forming an enclosure to maintain an applied vacuum therein,

wherein the gas-impermeable barrier envelope includes a curing agent, a curable resin, and a separator therebetween, such that a perforation of the separator causes the curing agent to react with the curable resin to seal the gas-impermeable barrier envelope, and wherein the separator includes metalized polyethylene terephthalate.

11. The self-healing vacuum insulation panel of claim 10 wherein the curing agent is disposed exterior to the separator and the curable resin is disposed interior to the separator.

12. The self-healing vacuum insulation panel of claim 10 wherein the curing agent includes an imine-functional group and wherein the curable resin includes an epoxide-functional group.

13. The self-healing vacuum insulation panel of claim 10 wherein the curing agent and the curable resin each include a slurry applied to opposing sides of the separator.

14. The self-healing vacuum insulation panel of claim 10 wherein the insulating core material comprises insulating powders or insulating fibers.

15. The self-healing vacuum insulation panel of claim 10 wherein the gas-impermeable barrier envelope further includes an outer protective layer positioned adjacent of the curing agent.

16. The self-healing vacuum insulation panel of claim 15 wherein the gas-impermeable barrier envelope further includes an inner protective layer positioned adjacent of the curable resin.

17. The self-healing vacuum insulation panel of claim 10 wherein the curing agent and the curable resin each define a layer including a thickness of between 5 μm and 200 μm, inclusive.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 1, 2021
From: BISWAS, KAUSHIK; CAO, PENGFEI; SAITO, TOMONORI
To: UT-BATTELLE, LLC
Reel/Frame 058255/0680 →
CONFIRMATORY LICENSE Recorded Mar 26, 2020
From: UT-BATTELLE, LLC
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 052232/0099 →
Continuity (3)
Provisional Application 62833904 · Apr 15, 2019
Provisional Application 62795102 · Jan 22, 2019
Related Publication 20200232594A1 · Jul 23, 2020
Cited By (3)
US 12,366,400 US 12,378,057 US 12,552,593