IP Library Granted Patent US 9,238,722
Granted Patent B2
US 9,238,722 · App. 14/565,593 · Granted Jan 19, 2016

Rigid polyurethane foam and system and method for making the same

Inventors: Sachchida N. Singh (The Woodlands, TX); Jinhuang Wu (Troy, MI); Alan J. Hamilton (Bourton, GB)
Assignee: Huntsman International LLC
C08J9/146C08G18/06C08G18/14C08G18/1808C08G18/1816C08G18/3206C08G18/34C08G18/3819C08G18/4027C08G18/4211C08G18/482C08G18/4816C08G18/4829C08G18/5033C08G18/544C08G18/6511C08G18/664C08G18/6674C08G18/7671C08J9/144C08G2101/005C08G2101/0025C08G2101/0058C08G2105/02C08J2205/052C08J2375/04C08J2375/08
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,238,722
App. No.
14/565,593
Granted
Jan 19, 2016
Kind
B2
Abstract

An embodiment of a closed-cell polymeric rigid foam may be made using a one-shot method and a reaction system that includes a hydrofluoroalkene physical blowing agent and a polyol mixture having an aminic polyol. The hydrofluoroalkene blowing agent has 3 to 5 carbon atoms and a boiling point between 10° C. and 40° C. at 1 atmosphere pressure. Embodiments of rigid foams may have high closed cell content and are particularly well suited for thermal insulation.

Claims (42)

1. A process for preparing rigid polymeric foam having a closed cell content of greater than 85% and a density of less than 4.5 pounds per cubic foot, wherein the process comprises reacting:

(a) an isocyanate composition comprising one or more organic polyisocyanates; and

(b) an isocyanate reactive composition comprising:

(i) a first polyol, wherein the first polyol is a aminic polyol selected from the group consisting of aromatic amine-initiated polyols, Mannich polyols, and mixtures thereof; and wherein the first polyol comprises an alkylene oxide moiety; and

(ii) a second polyol having a nominal hydroxyl functionality of at least 2 and a molecular weight of from 60 to 10,000 that is different than the first polyol and is free of amine groups,

wherein either the isocyanate composition or the isocyanate reactive composition further comprises one or more hydrofluoroalkene blowing agents selected from the group consisting of 2-bromopentafluoropropene, 1-bromopentafluoropropene, 3-bromopentafluoropropene, 3,3,4,4,5,5,5-heptafluoro-1-pentene, 3-bromo-1,1,3,3-tetrafluoropropene, 2-bromo-1,3,3,3-tetrafluoropropene, 1-bromo-2,3,3,3-tetrafluoropropene, 1,1,2,3,3,4,4-heptafluorobut-1-ene, 2-bromo-3,3,3-trifiuoropropene, E-1-bromo-3,3,3-trifluoropropene-1,3,3,3-trifiuoro-2-(trifluoromethyl) propene, 1-chloro-3,3,3-trifluoropropene, 2-chloro-3,3,3-trifiuoropropene, and 1,1,1-trifluoro-2-butene; and

wherein the weight ratio of the first polyol to the second polyol is from 40:60 to 25:75 and the combined weights of the first polyol and the second polyol is at least 20% of the total weight of the reaction system.

2. The process according to claim 1 , wherein the combined weights of the first polyol and the second polyol is at least 25% of the total weight of the reaction system.

3. The process according to claim 1 , wherein the combined weights of the first polyol and the second polyol is at least 30% of the total weight of the reaction system.

4. The process according to claim 1 , wherein the weight ratio of the first polyol to the second polyol is from 40:60 to 30:70.

5. The process according to claim 4 , wherein the combined weights of the first polyol and the second polyol is at least 25% of the total weight of the reaction system.

6. The process according to claim 4 , wherein the combined weights of the first polyol and the second polyol is at least 30% of the total weight of the reaction system.

7. The process according to claim 1 , wherein a polyol blend comprises the first polyol and the second polyol and wherein the polyol blend has a OH value of 400 mg KOH/g.

8. The process according to claim 1 , wherein the Mannich polyol has a nominal hydroxyl functionality of at least 2, has a molecular weight of greater than 150 and less than 10,000, and contains at least one secondary or tertiary amine nitrogen atom.

9. The process according to claim 8 , wherein the aromatic amine-initiated polyol has a nominal hydroxyl functionality of at least 2 and a molecular weight of greater than 300 and less than 10,000.

10. The process of claim 1 , wherein the isocyanate reactive composition further comprises one or more chemical blowing agents.

11. The process according to claim 10 , wherein the one or more chemical blowing agents is water.

12. The process of claim 11 , wherein water is present at levels ranging from at least 0.2% and less than 5% by weight based on the total weight of components (a) and (b).

13. The process according to claim 1 , wherein the alkylene oxide moiety comprises ethylene oxide, propylene oxide, butylene oxide, or combinations thereof.

14. The process according to claim 1 , wherein the alkylene oxide moiety comprises ethylene oxide, propylene oxide, or combinations thereof.

15. The process according to claim 1 , wherein the alkylene oxide moiety comprises ethylene oxide.

16. A rigid polyurethane or polyisocyanurate foam having a closed cell content of greater than 85% and a density of less than 4.5 pounds per cubic foot, wherein the foam is the reaction product of:

(a) an organic polyisocyanate composition; and

(b) an isocyanate reactive composition comprising:

(i) a first polyol, wherein the first polyol is an aminic polyol selected from the group consisting of aromatic amine-initiated polyols, Mannich polyols, and mixtures thereof; and wherein the first polyol comprises an alkylene oxide moiety;

(ii) a second polyol having a nominal hydroxyl functionality of at least 2 and a molecular weight of from 60 to 10,000 that is different than the first polyol and is free of amine groups; and

(iii) a blowing agent composition comprising one or more hydrofluoroalkenes selected from the group consisting of 2-bromopentafluoropropene, 1-bromopentafluoropropene, 3-bromopentafluoropropene, 3,3,4,4,5,5,5-heptafluoro-1-pentene, 3-bromo-1,1,3,3-tetrafluoropropene, 2-bromo-1,3,3,3-tetrafluoropropene, 1-bromo-2,3,3,3-tetrafluoropropene, 1,1,2,3,3,4,4-heptafluorobut-1-ene, 2-bromo-3,3,3-trifluoropropene, E-1-bromo-3,3,3-trifluoropropene-1,3,3,3-trifluoro-2-(trifluoromethyl) propene, 1-chloro-3,3,3-trifluoropropene, 2-chloro-3,3,3-trifluoropropene, and 1,1,1-trifluoro-2-butene; and

wherein the weight ratio of the first polyol to the second polyol is from 40:60 to 25:75 and the combined weights of the first polyol and the second polyol is at least 20% of the total weight of the reaction system.

17. The rigid polyurethane or polyisocyanurate foam according to claim 16 , wherein the combined weights of the first polyol and the second polyol is at least 25% of the total weight of the reaction system.

18. The rigid polyurethane or polyisocyanurate foam according to claim 16 , wherein the combined weights of the first polyol and the second polyol is at least 30% of the total weight of the reaction system.

19. The rigid polyurethane or polyisocyanurate foam according to claim 16 , wherein the weight ratio of the first polyol to the second polyol is from 40:60 to 30:70.

20. The rigid polyurethane or polyisocyanurate foam according to claim 19 , wherein the combined weights of the first polyol and the second polyol is at least 25% of the total weight of the reaction system.

21. The rigid polyurethane or polyisocyanurate foam according to claim 19 , wherein the combined weights of the first polyol and the second polyol is at least 30% of the total weight of the reaction system.

22. The rigid polyurethane or polyisocyanurate foam according to claim 16 , wherein the aromatic amine-initiated polyol has a nominal hydroxyl functionality of at least 2 and a molecular weight of greater than 300 and less than 10,000.

23. The rigid polyurethane or polyisocyanurate foam according to claim 16 , wherein the Mannich polyol has a nominal hydroxyl functionality of at least 2, has a molecular weight of greater than 150 and less than 10,000, and contains at least one secondary or tertiary amine nitrogen atom.

24. The rigid polyurethane or polyisocyanurate foam according to claim 16 , wherein the isocyanate reactive composition further comprises one or more chemical blowing agents.

25. The rigid polyurethane or polyisocyanurate foam according to claim 24 , wherein the one or more chemical blowing agents is water.

26. The rigid polyurethane or polyisocyanurate foam of claim 25 , wherein water is present at levels ranging from at least 0.2% and less than 5% by weight based on the total weight of components (a) and (b).

27. The rigid polyurethane or polyisocyanurate foam according to claim 16 , wherein a polyol blend comprises the first polyol and the second polyol and wherein the polyol blend has a OH value of 400 mg KOH/g.

28. The rigid polyurethane or polyisocyanurate foam according to claim 16 , wherein the alkylene oxide moiety comprises ethylene oxide, propylene oxide, butylene oxide, or combinations thereof.

29. The rigid polyurethane or polyisocyanurate foam according to claim 16 , wherein the alkylene oxide moiety comprises ethylene oxide, propylene oxide, or combinations thereof.

30. The rigid polyurethane or polyisocyanurate foam according to claim 16 , wherein the alkylene oxide moiety comprises ethylene oxide.

Assignments (2)
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 →
Continuity (4)
Continuation 13973018 · Aug 22, 2013
Continuation 12783717 · May 20, 2010
Provisional Application 61180282 · May 21, 2009
Related Publication 20150094389A1 · Apr 2, 2015