Claims
- 1. Coating compounds curable by means of high-energy radiation, comprising a binder of
A) at least one (meth)acrylic copolymer containing olefinic double bonds capable of free-radical polymerization and hydroxyl groups with a C═C equivalent weight from 100 to 10,000 and an OH-value from 20 to 250 mg KOH/g, which is prepared from monomers comprising:
A1) at least one olefinically unsaturated, epoxy-functional monomer capable of free-radical polymerization, A2) at least one olefinically unsaturated, carboxy-functional monomer capable of free-radical polymerization and A3) at least one further olefinically unsaturated monomer capable of free-radical polymerization which is different from A1) and A2), and B) at least one component with free isocyanate groups.
- 2. The coating compounds according to claim 1 comprising at least one (meth)acrylic copolymer containing olefinic double bonds capable of free-radical polymerization and hydroxyl groups with a C═C equivalent weight from 300 to 8,000 and a hydroxyl value of 20-200 mg KOH/g.
- 3. The coating compounds according to claim 1 comprising at least one (meth)acrylic copolymer capable of free-radical polymerization containing olefinic double bonds and hydroxyl groups, which is prepared from monomers comprising:
10-50 wt. % of component A1), 5-40 wt. % of component A2) and 10-80 wt. % of component A3), the sum of the percentages by wt. of A1), A2) and A3) being 100 wt. %.
- 4. The coating compounds according to claim 1, wherein component A3) comprises:
A3a) esters of olefinically unsaturated carboxylic acids capable of free-radical polymerization, optionally A3b) olefinically unsaturated hydroxy-functional monomers capable of free-radical polymerization and optionally A3c) further olefinically unsaturated monomers capable of free-radical polymerization that are different from A3a) and A3b).
- 5. The coating compounds according to claim 1, wherein component A1) is glycidyl (meth)acrylate.
- 6. The coating compounds according to claim 1, wherein component A2) is (meth)acrylic acid.
- 7. The coating compounds according to claim 1, wherein component A3) comprises:
A3a) esters of alpha,beta-olefinically unsaturated monocarboxylic acids with aliphatic and/or cycloaliphatic alcohols having 1-20 carbon atoms in the alcohol radical, A3b) hydroxyalkyl esters of alpha,beta-olefinically unsaturated monocarboxylic acids with aliphatic and/or cycloaliphatic alcohols having 1-10 carbon atoms in the hydroxyalkyl radical and optionally A3c) further olefinically unsaturated monomers capable of free-radical polymerization that are different from A3a) and A3b).
- 8. A process for multi-layer coating of substrates by applying a top coat layer to a substrate precoated with one or more coating layers, wherein the top coat layer composed of a color-and/or special effect-imparting base coat coating compound and a clear coat coating compound is applied, and wherein at least one of the coating layers of the multi-layer structure composed of a coating compound according to claim 1 is applied and cured by means of high-energy radiation.
- 9. A process for multi-layer coating of substrates by applying a top coat layer to a substrate precoated with one or more coating layers, wherein the top coat layer composed of a pigmented one-layer top coat coating compound is applied, and wherein at least one of the coating layers of the multi-layer structure composed of a coating compound according to claim 1 is applied and cured by means of high-energy radiation.
- 10. The process for multi-layer coating according to claim 8, wherein the clear coat layer of the multi-layer structure composed of a coating compound according to claim 1 is applied and cured by means of high-energy radiation.
- 11. The process for multi-layer coating according to claim 9, wherein the pigmented one-layer top coat layer of the multi-layer structure composed of a coating compound according to claim 1 is applied and cured by means of high-energy radiation.
- 12. The process for multi-layer coating according to claim 8, wherein the substrate is precoated with a filler layer and optionally further coating layers, and the filler layer composed of a coating compound according to claim 1 is applied and cured by means of high-energy radiation.
- 13. The process for multi-layer coating according to claim 9, wherein the substrate is precoated with a filler layer and optionally further coating layers, and the filler layer composed of a coating compound according to claim 1 is applied and cured by means of high-energy radiation.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application is a division of co-pending application Ser. No. 09/825,390, filed Apr. 3, 2001, which is hereby incorporated herein by reference.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09825390 |
Apr 2001 |
US |
Child |
10417900 |
Apr 2003 |
US |