Claims
- 1. A two coat one bake coating method which comprises applying to a substrate an aqueous base coating composition prepared by dispersing component (c) in an aqueous dispersion composition of a mixture of components (a) and (b) which components comprise:
- (a) 95 to 10% by weight (as solids) of a film-forming vinyl polymer prepared by copolymerizing 8 to 30% by weight of an amido group-containing ethylenic monomer or monomers, 3 to 15% by weight of an acidic group-containing ethylenic monomer or monomers, 10 to 40% by weight of a hydroxyl group-containing ethylenic monomer or monomers and at least one other ethylenic monomer accounting for the balance, said copolymer having a number average molecular weight of 6,000 to 50,000, and neutralizing at least part of the acidic groups of said copolymer;
- (b) 5 to 90% by weight (as solids) an aqueous dispersion prepared by dispersing, in a primary and/or secondary polyamine containing aqueous medium, hydrophilic group-containing oligomers produced by reacting together a hydroxyl-terminated diol compound or compounds having a molecular weight of 100 to 5,000, a diisocyanate compound or compounds and a hydrophilic group-containing compound or compounds having at least one active hydrogen atom within the molecule, wherein the NCO/OH equivalent ratio is 1.1 to 1.9;
- (c) 2 to 100 parts by weight, per 100 parts by weight of the above aqueous dispersion composition (as solids), of a pigment; and
- then applying a clear powder coating composition comprising an epoxy group-containing acrylic resin produced by copolymerizing 35 to 65% by weight of an epoxy group-containing monomer or monomers and 65 to 35% by weight of at least one other ethylenic monomer unreactive with epoxy groups, and a polycarboxylic acid or acids, with an acrylic resin epoxy group/polycarboxylic acid carboxyl group number ratio of 10/6 to 10/10, and baking the coatings.
- 2. The method according to claim 1, wherein an aqueous base coating composition is an aqueous metallic base coating composition.
- 3. The method according to claim 1, wherein the powder coating composition has an average particle size of not greater than 15 .mu.m.
- 4. The method according to claim 2, wherein the powder coating composition has an average particle size of not greater than 15 .mu.m.
- 5. A two coat one bake coating method which comprises applying to a substrate an aqueous base coating composition prepared by dispersing component (c) in an aqueous dispersion composition of a mixture of components (a) and (b) which components comprise:
- (a) 95 to 10% by weight (as solids) of a film-forming vinyl polymer prepared by copolymerizing 8 to 30% by weight of an amido group-containing ethylenic monomer or monomers, 3 to 15% by weight of an acidic group-containing ethylenic monomer or monomers, 10 to 40% by weight of a hydroxyl group-containing ethylenic monomer or monomers and at least one other ethylenic monomer accounting for the balance, said copolymer having a number average molecular weight of 6,000 to 50,000, and neutralizing at least part of the acidic groups of said copolymer;
- (b) 5 to 90% by weight (as solids) an aqueous dispersion prepared by dispersing, in a primary and/or secondary polyamine or both containing aqueous medium, hydrophilic group-containing oligomers produced by reacting a hydroxyl-terminated diol compound or compounds having a molecular weight of 100 to 5,000, a diisocyanate compound or compounds and a hydrophilic group-containing compound or compounds having at least one active hydrogen atom within the molecule together under the NCO/OH equivalent ratio of 1.1 to 1.9;
- (c) 2 to 100 parts by weight, per 100 parts by weight of the above aqueous dispersion composition (as solids), of a pigment; and
- then applying a clear powder coating composition comprising an epoxy group-containing acrylic resin produced by copolymerizing 35 to 65% by weight of an epoxy group-containing monomer or monomers and 65 to 35% by weight of at least one other ethylenic monomer unreactive with epoxy groups, and a polycarboxylic acid or acids, with an acrylic resin epoxy group/polycarboxylic acid carboxyl group number ratio of 10/6 to 10/10, and baking the coatings, wherein each powder particle in the powder coating composition carries, at least on the surface thereof, polymer microparticles having an average particle size of 0.001 to 10 .mu.m, a glass transition teperature of 50.degree. to 150.degree. C. and a solubility parameter {SP} of 9 to 15.
- 6. A two coat one bake coating method which comprises applying to a substrate an aqueous base coating composition prepared by dispersing component (c) in an aqueous dispersion composition of a mixture of components (a) and (b) which components comprise:
- (a) 95 to 10% by weight (as solids) of a film-forming vinyl polymer prepared by copolymerizing 8 to 30% by weight of an amido group-containing ethylenic monomer or monomers, 3 to 15% by weight of an acidic group-containing ethylenic monomer or monomers, 10 to 40% by weight of a hydroxyl group-containing ethylenic monomer or monomers and at least one other ethylenic monomer accounting for the balance, said copolymer having a number average molecular weight of 6,000 to 50,000, and neutralizing at least part of the acidic groups of said copolymer;
- (b) 5 to 90% by weight (as solids) an aqueous dispersion prepared by dispersing, in a primary and/or secondary polyamine or both containing aqueous medium, hydrophilic group-containing oligomers produced by reacting a hydroxyl-terminated diol compound or compounds having a molecular weight of 100 to 5,000, a diisocyanate compound or compounds and a hydrophilic group-containing compound or compounds having at least one active hydrogen atom within the molecule together under the NCO/OH equivalent ratio of 1.1 to 1.9;
- (c) 2 to 100 parts by weight, per 100 parts by weight of the above aqueous dispersion composition (as solids), of a pigment; and
- then applying a clear powder coating composition comprising an epoxy group-containing acrylic resin produced by copolymerizing 35 to 65% by weight of an epoxy group-containing monomer or monomers and 65 to 35% by weight of at least one other ethylenic monomer unreactive with epoxy groups, and a polycarboxylic acid or acids, with an acrylic resin epoxy group/polycarboxylic acid carboxyl group number ratio of 10/6 to 10/10, and baking the coatings, wherein an aqueous base coating composition is an aqueous metallic base coating composition, and
- wherein each powder particle in the powder coating composition carries, at least on the surface thereof, polymer microparticles having an average particle size of 0.001 to 10 .mu.m, a glass transition temperature of 50.degree. to 150.degree. C. and a solubility parameter {SP} of 9 to 15.
- 7. A two coat one bake coating method which comprises applying to a substrate an aqueous base coating composition prepared by dispersing component (c) in an aqueous dispersion composition of a mixture of components (a) and (b) which components comprise:
- (a) 95 to 10% by weight (as solids) of a film-forming vinyl polymer prepared by copolymerizing 8 to 30% by weight of an amido group-containing ethylenic monomer or monomers, 3 to 15% by weight of an acidic group-containing ethylenic monomer or monomers, 10 to 40% by weight of a hydroxyl group-containing ethylenic monomer or monomers and at least one other ethylenic monomer accounting for the balance, said copolymer having a number average molecular weight of 6,000 to 50,000, and neutralizing at least part of the acidic groups of said copolymer;
- (b) 5 to 90% by weight (as solids) an aqueous dispersion prepared by dispersing, in a primary and/or secondary polyamine or both containing aqueous medium, hydrophilic group-containing oligomers produced by reacting a hydroxyl-terminated diol compound or compounds having a molecular weight of 100 to 5,000, a diisocyanate compound or compounds and a hydrophilic group-containing compound or compounds having at least one active hydrogen atom within the molecule together under the NCO/OH equivalent ratio of 1.1 to 1.9;
- (c) 2 to 100 parts by weight, per 100 parts by weight of the above aqueous dispersion composition (as solids), of a pigment; and
- then applying a clear powder coating composition comprising an epoxy group-containing acrylic resin produced by copolymerizing 35 to 65% by weight of an epoxy group-containing monomer or monomers and 65 to 35% by weight of at least one other ethylenic monomer unreactive with epoxy groups, and a polycarboxylic acid or acids, with an acrylic resin epoxy group/polycarboxylic acid carboxyl group number ratio of 10/6 to 10/10, and baking the coatings,
- wherein the powder coating composition has an average particle size of not greater than 15 .mu.m, and wherein each powder particle in the powder coating composition carries, at least on the surface thereof, polymer microparticles having an average particle size of 0.001 to 10 .mu.m, a glass transition temperature of 50.degree. to 150.degree. C. and a solubility parameter {SP} of 9 to 15.
- 8. The method according to claim 1, wherein the polycarboxylic acid is decanedicarboxylic acid.
- 9. The method according to claim 2, wherein the polycarboxylic acid is decanedicarboxylic acid.
- 10. The method according to claim 3, wherein the polycarboxylic acid is decanedicarboxylic acid.
- 11. The method according to claim 4, wherein the polycarboxylic acid is decanedicarboxylic acid.
- 12. The method according to claim 1, wherein the epoxy group-containing acrylic resin is a copolymer of 55 to 65% by weight of an epoxy group-containing monomer or monomers and 45 to 35% by weight of at least one other ethylenic monomer unreactive with epoxy groups.
Priority Claims (1)
Number |
Date |
Country |
Kind |
4-361758 |
Dec 1992 |
JPX |
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CROSS REFERENCE TO A RELATED APPLICATION
This is a file wrapper continuation application of application Ser. No. 08/167,346, filed Dec. 15, 1993, now abandoned.
US Referenced Citations (21)
Foreign Referenced Citations (2)
Number |
Date |
Country |
0045040 |
Jul 1981 |
EPX |
0089497 |
Feb 1983 |
EPX |
Continuations (1)
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Number |
Date |
Country |
Parent |
167346 |
Dec 1993 |
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