POLYURETHANEUREAS OR POLYUREAS
This invention relates to polyurethane/polyureas with improved catalysis and to a process for the preparation of these polyurethane/polyureas. These materials comprise the reaction product of (A) a (cyclo)aliphatic polyisocyanate or (cyclo)aliphatic polyisocyanate prepolymer, with (B) an isocyanate-reactive component comprising at least one aromatic diamine compound containing from 1 to 8 thiomethyl groups, in the presence of (C) one or more catalysts selected from the group consisting of tin (II) catalysts, bismuth (III) catalysts and mixtures thereof. Preferably, the materials are optically clear.
1 . A polyurethane/polyurea material that comprises the reaction product of:
(A) a (cyclo)aliphatic polyisocyanate or (cyclo)aliphatic polyisocyanate prepolymer having an NCO group content of about 4 to 60%, and an average functionality of 1.8 to 6;
with
(B) an isocyanate-reactive component comprising at least one aromatic diamine compound which contains from 1 to 8 thiomethyl groups, and has a molecular weight of from 150 to 1000;
in the presence of
(C) one or more catalysts selected from the group consisting of tin (II) catalysts, bismuth (III) catalysts and mixtures thereof;
wherein the relative quantities of (A) and (B) are such that the Isocyanate Index is from about 70 to about 130.
2 . The polyurethane/polyurea material of claim 1 , wherein (B) said aromatic diamine compound is selected from the group consisting of 3,5-dimethylthiotoluene-2,4-diamine, 3,5-dimethylthiotoluene-2,6-diamine and mixtures thereof.
3 . The polyurethane/polyurea material of claim 1 , wherein (C) said tin (II) catalysts are selected from the group consisting of tin(II) bromide, tin(II) oxide, tin(II) acetate, tin(II) octoates and mixtures thereof,
4 . The polyurethane/polyurea material of claim 1 , wherein (C) said bismuth (III) catalysts comprise one or more bismuth carboxylates.
5 . The polyurethane/polyurea material of claim 1 , wherein (A) said (cyclo)aliphatic polyisocyanate or (cyclo)aliphatic polyisocyanate prepolymer comprises dicyclohexylmethane-4,4′-diisocyanate.
6 . The polyurethane/polyurea material of claim 1 , which is optically clear.
7 . A process for the preparation of an polyurethane/polyurea material, comprising reacting:
(A) a (cyclo)aliphatic polyisocyanate or (cyclo)aliphatic polyisocyanate prepolymer having an NCO group content of about 4 to 60%, and an average functionality of 1.8 to 6;
with
(B) an isocyanate-reactive component comprising at least one aromatic diamine compound which contains from 1 to 8 thiomethyl groups, and has a molecular weight of from 150 to 1000;
in the presence of
(C) one or more catalysts selected from the group consisting of tin (II) catalysts, bismuth (III) catalysts and mixtures thereof;
wherein the relative quantities of (A) and (B) are such that the Isocyanate Index is from about 70 to about 130.
8 . The process of claim 7 , wherein (B) said aromatic diamine compound is selected from the group consisting of 3,5-dimethylthiotoluene-2,4-diamine, 3,5-dimethylthiotoluene-2,6-diamine and mixtures thereof.
9 . The process of claim 7 , wherein (C) said tin (II) catalysts are selected from the group consisting of tin(II) bromide, tin(II) oxide, tin(II) acetate, tin(II) octoates and mixtures thereof.
10 . The process of claim 7 , wherein (C) said bismuth (III) catalysts comprise one or more bismuth carboxylates.
11 . The process of claim 7 , wherein (A) said (cyclo)aliphatic polyisocyanate or (cyclo)aliphatic polyisocyanate prepolymer comprises dicyclohexylmethane-4,4′-diisocyanate.
12 . The process of claim 7 , wherein the resultant polyurethane/polyurea is optically clear.