IP Library Patent Application 18282337
Patent Application
App. No. 18/282,337

METHOD FOR MAKING A LOW DENSITY THERMALLY RECYCLABLE POLYMER FOAM

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Patent No.
US None
App. No.
18/282,337
Abstract

A 2-step processing method to form a partly cross-linked polyurethane (PU) comprising foam having densities below 600 kg/m 3 , preferably in the range 20-300 kg/m 3 , said method comprising: A first processing which comprises at least following steps: a) providing a reactive mixture comprising an isocyanate composition comprising at least one isocyanate compound, an isocyanate-reactive composition comprising at least one isocyanate reactive compound, a crosslinking agent and a blowing agent composition comprising at least a heat activatable blowing agent which is heat activatable to achieve blowing at an activation temperature T activate , and b) allowing the reactive mixture to polymerize, optionally using a shape or mold, at a process temperature T process wherein T process <T activate and T process <T melt to form a polyurethane comprising material having a melting temperature T melt and which is solid at room temperature, and then A second processing which comprises at least following steps: c) placing the polyurethane comprising material in an autoclave, pressure vessel or pressurizable mold, d) subjecting the polyurethane comprising material to a temperature sufficient to soften the polymer material (T softening ) wherein T softening ≥T activate in combination with an elevated pressure P 1 wherein P 1 is higher than atmospheric pressure (P atm ), and then subsequently e) subjecting the polyurethane comprising material to a pressure reduction which is sufficient to achieve expansion (foaming) and to obtain the partly cross-linked polyurethane comprising foam

Claims (27)

1 . A 2-step processing method to form a partly cross-linked polyurethane (PU) comprising foam having a density below 600 kg/m 3 , said method comprising:

A first processing which comprises at least the following steps:

a) providing a reactive mixture comprising an isocyanate composition comprising at least one isocyanate compound, an isocyanate-reactive composition comprising at least one isocyanate reactive compound, a crosslinking agent and a blowing agent composition comprising at least a heat activatable blowing agent which is heat activatable to achieve blowing at an activation temperature T activate , and

b) allowing the reactive mixture to polymerize, optionally using a shape or mold, at a process temperature T process wherein T process <T activate and T process <T melt to form a polyurethane comprising material having a melting temperature T melt and which is solid at room temperature, and then

A second processing which comprises at least the following steps:

c) placing the polyurethane comprising material in an autoclave, pressure vessel or pressurizable mold,

d) subjecting the polyurethane comprising material to a temperature sufficient to soften the polymer material (T softening ) wherein T softening ≥T activate in combination with an elevated pressure P 1 wherein P 1 is higher than atmospheric pressure (P atm ), and then

e) subjecting the polyurethane comprising material to a pressure reduction which is sufficient to achieve expansion (foaming) and to obtain the partly cross-linked polyurethane comprising foam.

2 . The method according to claim 1 wherein the partly cross-linked polyurethane comprising foam is a thermally recyclable polyurethane comprising foam.

3 . The method according to claim 1 , wherein the reactive mixture has an overall nominal average functionality in the range 2-2.3.

4 . The method according to claim 1 , wherein the reactive mixture has a nominal average iso-reactive functionality in the range 1.5-4 and/or a nominal average isocyanate functionality in the range 1.5-4.

5 . The method according to claim 1 , wherein the crosslinking agent in the reactive mixture is selected from isocyanate reactive compounds having a nominal average iso-reactive functionality higher than 2.

6 . The method according to claim 1 , wherein the crosslinking agent in the reactive mixture is selected from compounds which are reactive at temperatures below the or equal to the melting temperature T melt .

7 . The method according to claim 1 , wherein the polyurethane comprising material obtained in the first processing is submitted to a post-curing step before the second processing.

8 . The method according to claim 1 , wherein the isocyanate index of the reactive mixture is between 80 and 120.

9 . The method according to claim 1 , wherein the heat activatable blowing agent is selected from a chemical blowing agent having an activation temperature above 80° C.

10 . The method according to claim 1 , wherein the heat activatable blowing agent is selected from azodicarbonam ides, azobisisobutyronitrile, azodicarbonic methyl ester, diazabicyclooctane, dinitrosopentamethylenetetramine, toluenesulfonyl hydrazide, benzene sulfonyl hydrazide, trihydrazinotriazine and/or diaminodiphenylsulphone and mixtures thereof.

11 . The method according to claim 1 , wherein the heat activatable blowing agent is selected from a physical blowing agent selected from encapsulated physical blowing agents and expandable microspheres where a gas or gas forming compound is encapsulated in a polymer shell having an activation temperature T activate >T process and/or non-encapsulated physical blowing agents selected from chlorofluorocarbons, halogenated hydrocarbons and/or non-halogenated hydrocarbons which have an activation temperature T activate >T process .

12 . The method according to claim 1 , wherein the blowing agent composition comprises at least 50 wt % of heat activatable blowing agents which are heat activatable at an activation temperature T activate , which is higher than the processing (polymerization) temperature T process (T process <T activate ) based on the total weight of the blowing agent composition.

13 . The method according to claim 1 , wherein the reactive mixture comprises less than 0.5 wt % water calculated on the total weight of the reactive mixture.

14 . The method according to claim 1 , wherein the first processing is performed in a first mold and the second processing is performed in a second mold and wherein the first mold is different to the second mold and the second mold corresponds to the final desired shape of the polyurethane comprising foam.

15 . The method according to claim 1 , wherein the step of subjecting the polyurethane comprising material to an elevated pressure P 1 (step d)) wherein P 1 is higher than atmospheric pressure (P atm ) is performed in a pressure range P atm <P 1 <250 bar.

16 . (canceled)

17 . The method according to claim 1 , wherein the temperature in the second processing within the pressure vessel is preferably kept in the range 30-250° C.

18 . The method according to claim 1 , wherein the second processing which comprises placing the polyurethane comprising material in a pressure vessel or pressurized mold (step b)) is performed in an autoclave in an inert atmosphere.

19 . The method according to claim 1 , wherein the temperature used in the second processing (T 1 ) step d) is below the melting temperature T melt of the polyurethane comprising material (T 1 <T melt ).

20 . A partly cross-linked polyurethane (PU) comprising foam obtained after to the second processing of the 2-step processing method according to claim 1 , wherein said foam has a density in the range 100-300 kg/m 3 .

Assignments (3)
SECURITY INTEREST Recorded May 4, 2026
From: HUNTSMAN INTERNATIONAL LLC; HUNTSMAN ADVANCED MATERIALS AMERICAS LLC; HUNTSMAN NANOCOMP LLC; HUNTSMAN PETROCHEMICAL LLC
To: CITIBANK N.A.
Reel/Frame 075498/0663 →
PATENT SECURITY AGREEMENT Recorded Mar 10, 2026
From: HUNTSMAN INTERNATIONAL LLC; HUNTSMAN ADVANCED MATERIALS AMERICAS LLC; HUNTSMAN NANOCAMP LLC; HUNTSMAN PETROCHEMICAL LLC
To: CITIBANK, N.A.
Reel/Frame 075106/0238 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 24, 2023
From: VERBEKE, HUGO; VANROY, BRAM; VANEMPTEN, ERIKA; BRIERS, DAVID
To: HUNTSMAN INTERNATIONAL LLC
Reel/Frame 065325/0781 →