IP Library Patent Application 16434502
Patent Application
App. No. 16/434,502

THERMAL MANAGEMENT PHASE-CHANGE COMPOSITION, METHODS OF MANUFACTURE THEREOF, AND ARTICLES CONTAINING THE COMPOSITION

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Patent No.
US None
App. No.
16/434,502
Abstract

A phase-change composition comprises a homogeneous mixture of a thermoplastic polymer composition; and a phase-change material; wherein the phase-change composition has a viscosity of less than 100,000 centipoise, or less than 55,000 centipoise, or less than 30,000 centipoise, or less than 20,000 centipoise, or less than 10,000 centipoise, or less than 3000 centipoise at a temperature greater than or equal to 120° C. and is a gel at a temperature less than or equal to 100° C., or less than or equal to 80° C., or less than or equal to 50° C.

Claims (39)

1 . A phase-change composition, comprising:

a homogeneous mixture of

a thermoplastic polymer composition; and

a phase-change material;

wherein the phase-change composition has a viscosity of less than 100,000 centipoise, or less than 55,000 centipoise, or less than 30,000 centipoise, or less than 20,000 centipoise, or less than 10,000 centipoise, or less than 3000 centipoise at a temperature greater than or equal to 120° C. and is a gel at a temperature less than or equal to 100° C., or less than or equal to 80° C., or less than or equal to 50° C.

2 . The phase-change composition of claim 1 , wherein

the thermoplastic polymer composition comprises an elastomeric block copolymer, an elastomeric graft copolymer, an elastomeric random copolymer, or a combination thereof.

3 . The phase-change composition of claim 1 wherein

the phase-change material comprises a C10-35 alkane, C10-35 fatty acid, C10-35 fatty acid ester, or a vegetable oil.

4 . The phase-change composition of claim 1 , further comprising an additive composition, wherein the additive composition comprises an encapsulated phase-change material, a flame retardant, a thermal stabilizer, an antioxidant, a thermoconductive filler, a thermally insulating filler, a magnetic filler, a colorant, or a combination thereof.

5 . The phase-change composition of claim 4 , wherein

the flame retardant comprises a metal carbonate, a metal hydrate, a metal oxide, a halogenated organic compound, an organic phosphorus-containing compound, a nitrogen-containing compound, a phosphinate salt, or a combination thereof.

6 . The phase-change composition of claim 1 , comprising

40 to 95 weight percent, or 50 to 90 weight percent, or 60 to 85 weight percent, or 70 to 80 weight percent of unencapsulated phase-change material;

2 to 40 weight percent, or 4 to 30 weight percent, or 5 to 20 weight percent, or 5 to 15 weight percent of the thermoplastic polymer composition; and

up to 60 weight percent, or 0.1 to 40 weight percent, or 0.5 to 30 weight percent or 1 to 20 weight percent of an additive composition;

wherein weight percent is based on the total weight of the phase-change composition and totals 100 weight percent.

7 . The phase-change composition of claim 1 , having a heat of fusion, determined by differential scanning calorimetry according to ASTM D3418, at the melting temperature of at least 150 Joules/gram.

8 . The phase-change composition of claim 1 , wherein the phase-change material has a melting temperature of 5 to 70° C.

9 . The phase-change composition of claim 1 , meeting the UL94 VTM-2 flammability standard.

10 . A method of manufacturing the phase-change composition of claim 1 , the method comprising:

combining

a composition comprising the thermoplastic polymer composition and optionally a solvent, and

molten phase-change material

to form a mixture;

cooling the mixture to provide a phase-change composition that is a gel at a temperature less than or equal to 100° C., or less than or equal to 80° C., or less than or equal to 50° C., or less than or equal to 30° C.; and

optionally removing the solvent.

11 . The method of claim 10 , wherein the mixture is cooled to a temperature of less than or equal to 100° C., or less than or equal to 80° C., or less than or equal to 50° C.

12 . An article comprising the phase-change composition of claim 1 .

13 . The article of claim 12 , wherein the phase-change composition is disposed in a cavity of the article.

14 . The article of claim 13 , wherein the cavity has a smallest dimension of less than 2 centimeters.

15 . The article of claim 12 , wherein the article is an electronic device, an LED device, or a battery.

16 . A method of manufacturing an article comprising a phase-change composition, the method comprising

heating the phase-change composition of claim 1 at a temperature effective to provide a viscosity of less than 100,000 centipoise, or less than 55,000 centipoise, or less than 30,000 centipoise, or less than 20,000 centipoise, or less than 10,000 centipoise, or less than 3000 centipoise;

introducing the heated phase-change composition into a cavity of an article; and

cooling the introduced phase-change composition to form a gelled phase-change composition within the cavity.

17 . The method of claim 16 , wherein the introduced phase-change composition is cooled to a temperature of less than or equal to 100° C., or less than or equal to 80° C., or less than or equal to 50° C.

18 . The method of claim 16 , wherein the cavity has a smallest dimension of less than 2 centimeters.

19 . The method of claim 16 , wherein the article is an electronic device, an LED device, or a battery.

Assignments (2)
SECURITY INTEREST Recorded Oct 16, 2020
From: ROGERS CORPORATION
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 054090/0037 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 7, 2019
From: WEI, MING; SMITH, IAN; SOONG, SHARON
To: ROGERS CORPORATION
Reel/Frame 049403/0545 →