Claims
- 1. An aqueous coating composition comprising:
(a) at least one crosslinkable film-forming resin; and (b) at least one amphiphilic adjuvant comprising: a water-soluble polar end comprising at least one terminal hydroxyl group; and a water-insoluble hydrocarbon end comprising at least seven contiguous carbon atoms, the adjuvant having an acid value of less than 30 and being present in an amount ranging from about 0.01 to about 25 weight percent on a basis of total resin solids of the aqueous coating composition, the film-forming resin and adjuvant being present in an aqueous medium.
- 2. The aqueous coating composition according to claim 1, wherein the aqueous coating composition is a primer coating composition.
- 3. The aqueous coating composition according to claim 1, wherein the aqueous coating composition is a basecoat coating composition over which a transparent topcoat is applied to form a multi-component composite coating composition.
- 4. The aqueous coating composition according to claim 1, wherein the aqueous coating composition is a topcoat film-forming composition applied over a basecoat to form a multi-component composite coating composition.
- 5. The aqueous coating composition according to claim 1, wherein the crosslinkable film-forming resin is selected from the group consisting of polyesters, polyurethanes, acrylic polymers, polyamides, polyethers and copolymers and mixtures thereof.
- 6. The aqueous coating composition according to claim 1, wherein the crosslinkable film-forming resin is an aqueous dispersion of polymeric microparticles prepared by polymerizing ethylenically unsaturated monomers in the presence of a substantially hydrophobic polymer selected from the group consisting of polyesters and polyurethanes.
- 7. The aqueous coating composition according to claim 1, wherein the crosslinkable film-forming resin is present in an amount ranging from about 25 to about 100 weight percent on a basis of total resin solids of the aqueous coating composition.
- 8. The aqueous coating composition according to claim 1, wherein the adjuvant is a reaction product which is prepared from reactants comprising at least one monocarboxylic acid and at least one polyol.
- 9. The aqueous coating composition according to claim 8, wherein the monocarboxylic acid is selected from the group consisting of heptanoic acid, caprylic acid, pelargonic acid, capric acid, n-undecylic acid, lauric acid, myristic acid, palmitic acid, margaric acid, stearic acid, isostearic acid, arachidic acid, behenic acid, lignoceric acid, cerotic acid, oleic acid, elaidic acid, linoleic acid, linolenic acid, dihydroxystearic acid, ricinoleic acid and isomers and mixtures thereof.
- 10. The aqueous coating composition according to claim 8, wherein the polyol is selected from the group consisting of 1,4-butanediol, 1,6-hexanediol, neopentyl glycol, ethylene glycol, diethylene glycol, 2,3-butylene glycol, glycerol, trimethylolpropane, ditrimethylolpropane, pentaerythritol, dipentaerythritol, sorbitol, mannitol and mixtures thereof.
- 11. The aqueous coating composition according to claim 8, wherein the reaction product is selected from the group consisting of trimethylolpropane monoisostearate, di-trimethyolpropane isostearate, pentaerythritol isostearate, pentaerythritol diisostearate and mixtures thereof.
- 12. The aqueous coating composition according to claim 8, wherein the reactants further comprise at least one additional reactant selected from the group consisting of polycarboxylic acids, polyfunctional amines, polyfunctional isocyanates and mixtures thereof.
- 13. The aqueous coating composition according to claim 12, wherein the polycarboxylic acid is selected from the group consisting of dimer fatty acids, 1,4-cyclohexane dicarboxylic acid, phthalic acid and mixtures thereof.
- 14. The aqueous coating composition according to claim 13, wherein the reaction product is prepared from isostearic acid, trimethylolpropane and 1,4-cyclohexane dicarboxylic acid.
- 15. The aqueous coating composition according to claim 12, wherein polycarboxylic acid is present as an additional reactant in an amount of less than about 50 weight percent on a basis of total weight of the reactants from which the adjuvant reaction product is prepared.
- 16. The aqueous coating composition according to claim 15, wherein polycarboxylic acid is present in an amount of less than about 30 weight percent on a basis of total weight of the reactants from which the adjuvant reaction product is prepared.
- 17. The aqueous coating composition according to claim 12, wherein the reaction product is stearyl diethanolamide.
- 18. The aqueous coating composition according to claim 1, wherein the adjuvant is a reaction product which is prepared from reactants comprising at least one polycarboxylic acid, at least one polyol and at least one hydrocarbon alcohol comprising at least seven contiguous carbon atoms.
- 19. The aqueous coating composition according to claim 1, wherein the adjuvant is a reaction product which is prepared from reactants comprising at least one amine comprising at least seven contiguous carbon atoms and at least one reactant selected from the group consisting of carbonates, and polycarboxylic acids and polyols.
- 20. The aqueous coating composition according to claim 19, wherein the reaction product is N-stearyl dihydroxypropyl carbamate.
- 21. The aqueous coating composition according to claim 1, wherein the adjuvant is a reaction product which is prepared from reactants comprising at least one monocarboxylic acid and at least one epoxide.
- 22. The aqueous coating composition according to claim 21, wherein the reaction product is the reaction product of isostearic acid and glycidol.
- 23. The aqueous coating composition according to claim 1, wherein the adjuvant has an acid value of less than about 20.
- 24. The aqueous coating composition according to claim 23, wherein the adjuvant has an acid value of less than about 10.
- 25. The aqueous coating composition according to claim 24, wherein the adjuvant has an acid value of less than about 5.
- 26. The aqueous coating composition according to claim 1, wherein the adjuvant is substantially saturated.
- 27. The aqueous coating composition according to claim 1, wherein the polar end of the adjuvant has an average of one to about three terminal hydroxyl groups.
- 28. The aqueous coating composition according to claim 1, wherein the polar end of the adjuvant further comprises at least one hydrophilic terminal group selected from the group consisting of carbamate groups, amide groups and urea groups.
- 29. The aqueous coating composition according to claim 1, wherein the hydrocarbon end of the adjuvant comprises seven to twenty-four contiguous carbon atoms.
- 30. The aqueous coating composition according to claim 1, wherein the hydrocarbon end of the adjuvant comprises a linear chain comprising at least seven contiguous carbon atoms.
- 31. The aqueous coating composition according to claim 1, wherein the adjuvant is present in an amount ranging from about 0.1 to about 15 weight percent on a basis of total resin solids of the aqueous coating composition.
- 32. The aqueous coating composition according to claim 1, wherein the basecoat coating composition further comprises at least one crosslinking material capable of reacting with the film-forming resin to form a crosslinked film.
- 33. The aqueous coating composition according to claim 32, wherein the crosslinking material is present in an amount ranging from about 5 to about 50 weight percent on a basis of total resin solids of the aqueous coating composition.
- 34. The aqueous coating composition according to claim 32, wherein the crosslinking material is selected from the group consisting of aminoplasts, polyisocyanates, polyacids, anhydrides and mixtures thereof.
- 35. A multi-component composite coating composition comprising a basecoat deposited from an aqueous basecoat coating composition and a transparent topcoat applied over the basecoat in which the transparent topcoat is deposited from a topcoat coating composition, the basecoat coating composition comprising:
(a) at least one crosslinkable film-forming resin; and (b) at least one amphiphilic adjuvant comprising: a water-soluble polar end comprising at least one terminal hydroxyl group; and a water-insoluble hydrocarbon end comprising at least seven contiguous carbon atoms, the adjuvant being present in an amount ranging from about 0.01 to about 25 weight percent on a basis of total resin solids of the basecoat coating composition.
- 36. The composite coating composition according to claim 35, wherein the topcoat coating composition is selected from the group consisting of waterborne coating compositions, solventborne coating compositions and powder coating compositions.
- 37. The composite coating composition according to claim 36, wherein the topcoat coating composition is a waterborne coating composition.
- 38. The composite coating composition according to claim 35, wherein the topcoat coating composition is a crosslinkable coating comprising at least one film-forming material and at least one crosslinking material.
- 39. A substrate having on at least a portion of a surface thereof a multi-component composite coating composition comprising a basecoat deposited from an aqueous basecoat coating composition and a transparent topcoat applied over the basecoat in which the transparent topcoat is deposited from a topcoat coating composition, the basecoat coating composition comprising:
(a) at least one crosslinkable film-forming resin; and (b) at least one amphiphilic adjuvant comprising: a water-soluble polar end comprising at least one terminal hydroxyl group; and a water-insoluble hydrocarbon end comprising at least seven contiguous carbon atoms, the adjuvant being present in an amount ranging from about 0.01 to about 25 weight percent on a basis of total resin solids of the basecoat coating composition.
- 40. A method for increasing the surface tension of a basecoat in a multi-component composite coating composition comprising the steps of depositing an aqueous basecoat coating composition comprising at least one crosslinkable film-forming resin to form a crosslinked basecoat and applying a topcoat coating composition over the basecoat to form a transparent topcoat thereon, wherein the improvement comprises:
the basecoat coating composition further comprising at least one amphiphilic adjuvant comprising: a water-soluble polar end comprising at least one terminal hydroxyl group; and a water-insoluble hydrocarbon end comprising at least seven contiguous carbon atoms, the adjuvant being present in an amount ranging from about 0.01 to about 25 weight percent on a basis of total resin solids of the basecoat coating composition.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This patent application is related to provisional U.S. patent application Ser. No. 60/075,030 entitled “Low Temperature Cure Waterborne Coating Compositions Having Improved Appearance And Humidity Resistance”, filed Feb. 18, 1998.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60075030 |
Feb 1998 |
US |
Divisions (1)
|
Number |
Date |
Country |
| Parent |
09250671 |
Feb 1999 |
US |
| Child |
09925670 |
Aug 2001 |
US |