IP Library Patent Application 13632451
Patent Application
App. No. 13/632,451

METHODS FOR MAKING AQUEOUS POLYURETHANE DISPERSIONS OF AROMATIC POLYISOCYANATE MIXTURES AND COMPOSITIONS

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Patent No.
US None
App. No.
13/632,451
Abstract

Aqueous polyurethane dispersions made from aromatic polyisocyanates and mixtures of aromatic polyisocyanates and compositions thereof are provided. Advantageously, the methods disclosed herein provide aqueous polyurethane dispersions which are produced more economically with no added organic solvent in the aqueous polyurethane dispersions. Such polyurethane dispersions are environmentally friendly and are useful as adhesives, sealants and coatings for laminating or bonding substrates such as paper, wood, metals, plastics and other synthetic materials.

Claims (54)

1 . A method of making a polyurethane dispersion comprising a mixture of aromatic polyisocyanates comprising the steps of:

(1) forming a polyurethane prepolymer from a composition comprising:

a) at least one polyol;

b) at least one diol containing carboxyl functionality;

c) an isomeric mixture of diphenylmethyl diisocyanate comprising about 37% by weight or less of 4,4′-methylene bis (phenyl isocyanate); and optionally

d) at least one additional aromatic isocyanate; and

(2) combining the polyurethane prepolymer from step (1) with at least one neutralizing amine and water.

2 . The method of claim 1 , wherein step d) is not optional and steps c) and d) are performed in an essentially one-step process, being added within 45 minutes of each other after the polyol has begun to react.

3 . The method of claim 1 , further comprising adding at least one amine crosslinker in step (2).

4 . The method of claim 1 , wherein at least one polyol is selected from the group consisting of polyether polyols, polyester polyols, acrylic polyols, a polybutadiene polyols and combinations thereof.

5 . The method of claim 1 , wherein at least one diol containing carboxyl functionality is 2,2-dimethylolpropionic acid or 2,2-dimethylolbutanic acid.

6 . The method of claim 1 , wherein the isomeric mixture of diphenylmethyl diisocyanate comprises about 33% by weight or less of 4,4′-methylene bis (phenyl isocyanate).

7 . The method of claim 1 , wherein the isomeric mixture of diphenylmethyl diisocyanate comprises about 20% by weight or less of 4,4′-methylene bis (phenyl isocyanate).

8 . The method of claim 1 , wherein the isomeric mixture of diphenylmethyl diisocyanate comprises about 12% by weight or less of 4,4′-methylene bis (phenyl isocyanate).

9 . The method of claim 1 , wherein the molar ratio of the additional aromatic isocyanate in step d) to the isomeric mixture of step c) is less than about 65:35.

10 . The method of claim 1 , wherein the molar ratio of the additional aromatic isocyanate in step d) to the isomeric mixture of step c) is less than about 50:50.

11 . The method of claim 1 , wherein the molar ratio of the additional aromatic isocyanate in step d) to the isomeric mixture of step c) is less than about 35:65.

12 . The method of claim 1 , wherein the polyol is present in an amount of about 50% to about 95% by weight of the composition from which the polyurethane prepolymer is formed.

13 . The method of claim 1 , wherein the diol containing carboxyl functionality is present in an amount of about 1% to about 25% by weight of the composition from which the polyurethane prepolymer is formed.

14 . The method of claim 1 , wherein the isomeric mixture is present in an amount of about 3% to about 60% by weight of the composition from which the polyurethane prepolymer is formed.

15 . The method of claim 1 , wherein the neutralizing amine is present in a ratio of diol containing carboxyl functionality to neutralizing amine of about 1:0.35 to about 1:2.5.

16 . The method of claim 1 , wherein the polyurethane dispersion is free of added organic solvent.

17 . A polyurethane prepolymer formed by reacting a composition comprising:

a) at least one polyol;

b) at least one diol containing carboxyl functionality;

c) an isomeric mixture of diphenylmethyl diisocyanate comprising about 37% by weight or less of 4,4′-methylene bis (phenyl isocyanate); and optionally

d) at least one additional aromatic isocyanate.

18 . The polyurethane prepolymer of claim 17 , wherein the isomeric mixture of diphenylmethyl diisocyanate comprises about 33% by weight or less of 4,4′-methylene bis (phenyl isocyanate).

19 . The polyurethane prepolymer of claim 17 , wherein the isomeric mixture of diphenylmethyl diisocyanate comprises about 20% by weight or less of 4,4′-methylene bis (phenyl isocyanate).

20 . The polyurethane prepolymer of claim 17 , wherein the isomeric mixture of diphenylmethyl diisocyanate comprises about 12% by weight or less of 4,4′-methylene bis (phenyl isocyanate).

21 . The method of claim 17 , wherein the molar ratio of the additional aromatic isocyanate in step d) to the isomeric mixture of step c) is less than about 65:35.

22 . The method of claim 17 , wherein the molar ratio of the additional aromatic isocyanate in step d) to the isomeric mixture of step c) is less than about 50:50.

23 . The method of claim 17 , wherein the molar ratio of the additional aromatic isocyanate in step d) to the isomeric mixture of step c) is less than about 35:65.

24 . A polyurethane prepolymer formed from an isomeric mixture of diphenylmethyl diisocyanate comprising a polymer segment formed from no more than about 37% by weight 4,4′-methylene bis (phenyl isocyanate) isomer.

25 . The polyurethane prepolymer of claim 24 wherein the isomeric mixture of diphenylmethyl diisocyanate comprises about 33% by weight or less of 4,4′-methylene bis (phenyl isocyanate).

26 . The polyurethane prepolymer of claim 24 , wherein the isomeric mixture of diphenylmethyl diisocyanate comprises about 20% by weight or less of 4,4′-methylene bis (phenyl isocyanate).

27 . The polyurethane prepolymer of claim 24 , wherein the isomeric mixture of diphenylmethyl diisocyanate comprises about 12% by weight or less of 4,4′-methylene bis (phenyl isocyanate).

28 . A polyurethane dispersion comprising:

a) an aqueous medium; and

b) polyurethane prepolymer particles dispersed within the aqueous medium, wherein the polyurethane prepolymer particles are formed from a composition comprising an isomeric mixture of diphenylmethyl diisocyanate and at least one additional aromatic isocyanate and the composition comprises no more than about 37% by weight of a polymer segment formed from 4,4′-methylene bis (phenyl isocyanate).

29 . The polyurethane dispersion of claim 28 , wherein the isomeric mixture of diphenylmethyl diisocyanate comprises about 33% by weight or less of 4,4′-methylene bis (phenyl isocyanate).

30 . The polyurethane dispersion of claim 28 , wherein the isomeric mixture of diphenylmethyl diisocyanate comprises about 20% by weight or less of 4,4′-methylene bis (phenyl isocyanate).

31 . The polyurethane dispersion of claim 28 , wherein the isomeric mixture of diphenylmethyl diisocyanate comprises about 12% by weight or less of 4,4′-methylene bis (phenyl isocyanate).

32 . The polyurethane dispersion of claim 28 , wherein the molar ratio of the additional aromatic isocyanate in step d) to the isomeric mixture of step c) is less than about 65:35.

33 . The polyurethane dispersion of claim 28 , wherein the molar ratio of the additional aromatic isocyanate in step d) to the isomeric mixture of step c) is less than about 50:50.

34 . The polyurethane dispersion of claim 28 , wherein the molar ratio of the additional aromatic isocyanate in step d) to the isomeric mixture of step c) is less than about 35:65.

35 . A polyurethane coating formed from the polyurethane dispersion of claim 1 .

36 . An adhesive formed from the polyurethane dispersion of claim 1 .

37 . A sealant formed from the polyurethane dispersion of claim 1 .

38 . A method of mating two substrates comprising applying the polyurethane dispersion of claim 1 to a substrate surface, mating another substrate therewith such that the polyurethane dispersion is in contact with both substrates and allowing the polyurethane dispersion to cure or dry.

39 . A method of coating comprising applying the polyurethane dispersion of claim 1 to a substrate and allowing it to dry.

40 . A method of coating comprising applying the polyurethane dispersion of claim 1 to a substrate and allowing it to cure.

41 . The method of claim 1 further comprising blending the polyurethane prepolymer from step (1) with a monomer, a polymer, or any combination thereof.

42 . The method of claim 1 further comprising copolymerizing the polyurethane prepolymer from step (1) with a monomer, a polymer, or any combination thereof.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 26, 2015
From: HENKEL US IP LLC
To: HENKEL IP & HOLDING GMBH
Reel/Frame 035100/0776 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 7, 2014
From: HENKEL CORPORATION
To: HENKEL US IP LLC
Reel/Frame 034184/0396 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 26, 2014
From: LI, YINGJIE; QIN, SHUHUI
To: HENKEL CORPORATION
Reel/Frame 032298/0453 →