Copolymers of isocyanatoalkyltrialkoxysilanes and urethanediols
View Patent ↗The present invention relates to a copolymer of the formula where A, B, and D are independently of one another an aliphatic (cyclo)alkylene radical, R is a C 1 -C 10 alkyl radical, and 3≦x≦10. The present invention also relates to a process for preparing the copolymer, to its use and also to a coating composition and a coating formulation containing the copolymer.
1. A copolymer of formula
where
A, B, D are independently an aliphatic (cyclo)alkylene radical,
R is a C 1 -C 10 alkyl radical, and
3≦x≦10.
2. The copolymer according to claim 1 , wherein each A is independently a linear C 1 -C 10 alkylene radical.
3. The copolymer according to claim 1 , wherein each R is independently a methyl, ethyl or isopropyl radical.
4. The copolymer according to claim 1 , wherein each B is independently a linear, branched or cyclic C 1 -C 12 alkylene radical.
5. The copolymer according to claim 1 , wherein each D is independently a (cyclo)aliphatic C 6 -C 15 alkylene radical.
6. The copolymer according to claim 5 , wherein each D independently has a structural formula selected from the group consisting of
7. A process for preparing the copolymer according to claim 1 , the process comprising:
reacting at least one diol with at least one diisocyanate to give a urethane intermediate, and
subsequently reacting the urethane intermediate with at least one isocyanatoalkyltrialkoxysilane.
8. A coating composition or a constituent of a coating composition, comprising:
the copolymer according to claim 1 .
9. A coating composition, comprising:
A) at least one copolymer according to claim 1 ,
B) a binder component,
C) optionally up to 4 wt % of a catalyst,
D) optionally an auxiliary and an additive, and
E) optionally an organic solvent.
10. The coating composition according to claim 9 , wherein component B) is selected from the group consisting of a hydroxyl-comprising polyester, a polyether, a poly(meth)acrylate, a polycarbonate and a polyurethane having an OH number of from 20 to 500 mg KOH/g and an average molar mass of from 250 to 6000 g/mol.
11. The coating composition according to claim 9 , wherein component C) is at least one catalyst selected from the group consisting of: C1) an organic carboxylic acid having a melting point above 60° C. and C2) a tetraalkylammonium carboxylate.
12. The coating composition according to claim 11 , wherein component C2) is at least one selected from the group consisting of tetramethylammonium formate, tetramethylammonium acetate, tetramethylammonium propionate, tetramethylammonium butyrate, tetramethylammonium benzoate, tetraethylammonium formate, tetraethylammonium acetate, tetraethylammonium propionate, tetraethylammonium butyrate, tetraethylammonium benzoate, tetrapropylammonium formate, tetrapropylammonium acetate, tetrapropylammonium propionate, tetrapropylammonium butyrate, tetrapropylammonium benzoate, tetrabutylammonium formate, tetrabutylammonium acetate, tetrabutylammonium propionate, tetrabutylammonium butyrate and tetrabutylammonium benzoate.
13. A coating composition, comprising:
I) at least one copolymer according to claim 1 ,
II) optionally an adduct of at least one Isocyanatosilane and at least one hydroxy-functional compound,
III) a tin-comprising compound and
IV) an aminosilane.
14. A coating formulation for metal, glass, plastic, paper, textile or wood, the coating formulation comprising:
at least one copolymer according to claim 1 .
15. A coating formulation for metal, glass, plastic, paper, textile or wood, the coating formulation comprising:
at least one coating composition according to claim 9 .