IP Library Patent Application 16148531
Patent Application
App. No. 16/148,531

POLYURETHANE FOAM PREMIXES CONTAINING HALOGENATED OLEFIN BLOWING AGENTS AND FOAMS MADE FROM SAME

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Quick Facts
Patent No.
US None
App. No.
16/148,531
Abstract

The invention provides polyurethane and polyisocyanurate foams and methods for the preparation thereof. More particularly, the invention relates to closed-celled, polyurethane and polyisocyanurate foams and methods for their preparation. The foams are characterized by a fine uniform cell structure and little or no foam collapse. The foams are produced with a polyol premix composition which comprises a combination of a hydrohaloolefin blowing agent, a polyol, a silicone surfactant, and a precipitation-resistant metal-based catalyst used alone or in combination with an amine catalyst.

Claims (43)

1 . A foamable composition comprising:

a. a blowing agent comprising a tetrafluoropropene, a chlorotrifluoropropene, and/or a hexafluorobutene;

b. one or more polyols,

c. one or more surfactants,

d. water, and

e. at least one precipitant resistant metal catalyst selected from the group consisting of a precipitant resistant cobalt-based metal catalyst, a precipitant resistant zinc-based metal catalyst, a precipitant resistant tin-based metal catalyst, a precipitant resistant zirconate-based metal catalyst, a precipitant resistant manganese-based metal catalyst, a precipitant resistant titanium-based metal catalyst and combinations thereof.

2 . The foamable composition of claim 1 wherein said precipitant resistant metal catalyst comprises a precipitant resistant cobalt-based metal catalyst.

3 . (canceled)

4 . The foamable composition of claim 2 wherein said precipitant resistant cobalt-based metal catalyst is selected from the group consisting of cobalt octoate, cobalt hexanoate, cobalt ethylhexanoate, cobalt acetylacetonate, cobalt ethoxide, cobalt propoxide, cobalt butoxide, cobalt isopropoxide, cobalt butoxide, derivatives thereof, and combinations thereof.

5 . The foamable composition of claim 1 wherein said precipitant resistant metal catalyst comprises a precipitant resistant zinc-based metal catalyst.

6 . (canceled)

7 . The foamable composition of claim 5 wherein said precipitant resistant zinc-based metal catalyst is selected from the group consisting of zinc carboxylate, zinc octoate, zinc hexanoate, zinc ethylhexanoate, a zinc acetylacetonate, zinc ethoxide, zinc propoxide, zinc butoxide, zinc isopropoxide, derivatives thereof, and combinations thereof.

8 . The foamable composition of claim 1 wherein said precipitant resistant metal catalyst comprises a precipitant resistant manganese-based metal catalyst.

9 . (canceled)

10 . The foamable composition of claim 8 wherein said precipitant resistant manganese-based metal catalyst is selected from the group consisting of a manganese carboxylate, a manganese octoate, manganese hexanoate, manganese 2-ethylhexanoate, a manganese acetylacetonate, manganese ethoxide, manganese propoxide, manganese butoxide, manganese isopropoxide, manganese butoxide, derivatives thereof, and combinations thereof.

11 . The foamable composition of claim 1 wherein said precipitant resistant metal catalyst comprises a precipitant resistant titanium-based metal catalyst.

12 . The foamable composition of claim 11 wherein said precipitant resistant titanium-based metal catalyst comprises a precipitant resistant titanium oxide based metal catalyst.

13 . (canceled)

14 . The foamable composition of claim 13 wherein R is selected from the group consisting of a C 1 -C 10 alkane, C 1 -C 10 alkene, a C 1 -C 10 alkyne, a heteroalkyl group, a aryl group, a heteroaryl group, a derivative thereof, and combinations thereof, where any of the foregoing R groups may be independently substituted or unsubstituted.

15 . The foamable composition of claim 12 wherein said precipitant resistant titanium oxide based metal catalyst comprises a precipitant resistant titanium tetraalkoxide.

16 . (canceled)

17 . The foamable composition of claim 1 wherein said precipitant resistant metal catalyst comprises a precipitant resistant tin mercaptide-based catalyst.

18 . (canceled)

19 . (canceled)

20 . The foamable composition of claim 17 wherein said precipitant resistant tin mercaptide-based catalyst is selected from the group consisting of dibutyltin dilaurylmercaptide, dimethyltin dilaurylmercaptide, diethyltin dilaurylmercaptide, dipropyltin dilaurylmercaptide, dihexyltin dilaurylmercaptide, dioctyltin dilaurylmercaptide, and combinations thereof.

21 . The foamable composition of claim 1 wherein said precipitant resistant metal catalyst comprises a precipitant resistant tin maleate-based catalyst.

22 . (canceled)

23 . (canceled)

24 . The foamable composition of claim 21 wherein said precipitant resistant tin maleate-based catalyst is selected from the group consisting of dimethyltin diisooctylmaleate, diethyltin diisooctylmaleate, dipropyltin diisooctylmaleate dibutyltin diisooctylmaleate, dihexyltin diisooctylmaleate, dioctyltin diisooctylmaleate, and combinations thereof.

25 . The foamable composition of claim 1 wherein said precipitant resistant metal catalyst comprises a precipitant resistant tin oxide-based catalyst.

26 . (canceled)

27 . The foamable composition of claim 25 wherein said precipitant resistant tin oxide-based catalyst is selected from the group consisting of dimethyltin oxide, diethyltin oxide, dipropyltin oxide, di(isopropyltin) oxide, dibutyl tin oxide, dihexyltin oxide.

28 . The foamable composition of claim 1 wherein said precipitant resistant metal catalyst comprises a precipitant resistant organic zirconate-based catalyst.

29 . (canceled)

30 . The foamable composition of claim 28 wherein said precipitant resistant organic zirconate-based catalyst is a zirconium tetraalkoxides or an ethylenediamine derivative thereof.

31 . (canceled)

32 . (canceled)

33 . (canceled)

34 . (canceled)

35 . (canceled)

36 . (canceled)

37 . (canceled)

38 . (canceled)