Claims
- 1. An autodeposition composition comprising the following components
(A) water; (B) an adduct which is the reaction product of
(1) one or more reactants comprising an epoxy resin of a glycidyl ether of bisphenol A, (2) one or more reactants comprising an epoxy resin of a glycidyl ether of cardanol and a further reactant comprising bisphenol A, or one or more reactants comprising a monofunctional compound selected from the group consisting of fatty acids and monoethers of polyalkylene glycols; (C) one or more emulsifying agents in sufficient quantity to disperse component (B) so that no separation or segregation of bulk phases that is perceptible with the normal unaided human vision occurs during storage at 25° C. for at least 24 hours after preparation of the autodeposition composition, in the absence of contact of the autodeposition liquid with any substance that reacts with the autodeposition composition; (D) one or more dissolved accelerator agents selected from the group consisting of acids, oxidizing agents and complexing agents, sufficient in strength and amount to impart to the autodeposition composition an oxidation-reduction potential that is at least 100 mV more oxidizing than a standard hydrogen electrode; and (E) a cross-linker comprising at least one blocked isocyanate cross-linker.
- 2. An autodeposition composition according to claim 1 wherein, in component (B), the one or more reactants comprising an epoxy resin of a glycidyl ether of bisphenol A have an epoxide equivalent weight of 150 to 300 and are reacted with one or more reactants comprising an epoxy resin of a glycidyl ether of cardanol and a further reactant comprising bisphenol A.
- 3. An autodeposition composition according to claim 1 wherein, in component (B), the one or more reactants comprising an epoxy resin of a glycidyl ether of bisphenol A have an epoxide equivalent weight of 300 to 1000 and are reacted with the one or more reactants comprising a monofunctional compound selected from the group consisting of fatty acids and monoethers of polyalkylene glycols.
- 4. An autodeposition composition according to claim 2 wherein the one or more reactants comprising an epoxy resin of a glycidyl ether of cardanol are selected from a group comprising CARDOLITE NC-514, CARDOLITE NC-514 and CARDOLITE NC-551 and mixtures thereof.
- 5. An autodeposition composition according to claim 3 wherein the monofunctional compound is a fatty acid.
- 6. An autodeposition composition according to claim 5 wherein the fatty acid is pelargonic acid.
- 7. An autodeposition composition according to claim 1 wherein at least one emulsifying agent of component (C) is an anionic sulfate or sulfonate surfactant.
- 8. An autodeposition composition according to claim 1 wherein the accelerator component (D) comprises one or more accelerator agents selected from hydrofluoric acid and its salts, fluorosilicic acid and its salts, fluorotitanic acid and its salts, salts comprising ferric ions, acetic acid, phosphoric acid, sulfuric acid, nitric acid, hydrogen peroxide, peroxy acids, citric acid and its salts, and tartaric acid and its salts.
- 9. An autodeposition composition according to claim 1 wherein the at least one blocked isocyanate cross-linker of component (E) comprises one or more diisocyanate-based, epsilon-caprolactam blocked isocyanate cross-linkers.
- 10. An autodeposition composition according to claim 1 wherein the adduct comprising component (B) is formed prior to forming an emulsion of said adduct in water.
- 11. An autodeposition composition according to claim 1 in the form of an aqueous dispersion wherein the average particle size is from 100 nm to 300 nm.
- 12. A process for coating a metallic substrate comprising
(I) forming an aqueous dispersion of an autodeposition composition comprising
(A) water; (B) an adduct which is the reaction product of
(1) one or more reactants comprising an epoxy resin of a glycidyl ether of bisphenol A, (2) one or more reactants comprising an epoxy resin of a glycidyl ether of cardanol and a further reactant comprising bisphenol A, or one or more reactants comprising a monofunctional compound selected from the group consisting of fatty acids and monoethers of polyalkylene glycols; (C) one or more emulsifying agents in sufficient quantity to disperse component (B) so that no separation or segregation of bulk phases that is perceptible with the normal unaided human vision occurs during storage at 25° C. for at least 24 hours after preparation of the autodeposition composition, in the absence of contact of the autodeposition liquid with any substance that reacts with the autodeposition composition; (D) one or more dissolved accelerator agents selected from the group consisting of acids, oxidizing agents and complexing agents, sufficient in strength and amount to impart to the autodeposition composition an oxidation-reduction potential that is at least 100 mV more oxidizing than a standard hydrogen electrode; and (E) a cross-linker comprising at least one blocked isocyanate cross-linker, wherein the adduct of component (B) is dispersed as particles in said dispersion; (II) contacting the substrate active metal surface with said aqueous dispersion of aid autodeposition composition for a sufficient time to cause the formation of a film comprising the dispersed adduct particles of the desired thickness on the surface of said metal substrate, (III) separating the coated metal surface from contact with the autodeposition composition; (IV) rinsing the coated metal surface; and (V) curing the coating on the metal surface of the substrate.
- 13. A process according to claim 12 wherein, in component (B) of the autodeposition composition, the one or more reactants comprising an epoxy resin of a glycidyl ether of bisphenol A have an epoxide equivalent weight of 150 to 300 and are reacted with one or more reactants comprising an epoxy resin of a glycidyl ether of cardanol and a further reactant comprising bisphenol A.
- 14. A process according to claim 12 wherein, in component (B) of the autodeposition composition, the one or more reactants comprising an epoxy resin of a glycidyl ether of bisphenol A have an epoxide equivalent weight of 300 to 1000 and are reacted with the one or more reactants comprising a monofunctional compound selected from the group consisting of fatty acids and monoethers of polyalkylene glycols.
- 15. A process according to claim 13 wherein the one or more reactants comprising an epoxy resin of a glycidyl ether of cardanol are selected from a group comprising CARDOLITE NC-514, CARDOLITE NC-514 and CARDOLITE NC-551 and mixtures thereof.
- 16. A process according to claim 14 wherein the monofunctional compound is a fatty acid.
- 17. A process according to claim 12 wherein at least one emulsifying agent of component (C) of said autodeposition composition is an anionic sulfate or sulfonate surfactant.
- 18. A process according to claim 12 wherein the accelerator component (D) of said autodeposition composition comprises one or more accelerator agents selected from hydrofluoric acid and its salts, fluorosilicic acid and its salts, fluorotitanic acid and its salts, salts comprising ferric ions, acetic acid, phosphoric acid, sulfuric acid, nitric acid, hydrogen peroxide, peroxy acids, citric acid and its salts, and tartaric acid and its salts.
- 19. A process according to claim 12 wherein the at least one blocked isocyanate cross-linker of component (E) of said autodeposition composition comprises one or more diisocyanate-based, epsilon-caprolactam blocked isocyanate cross-linkers.
- 20. A process according to claim 12 wherein the adduct comprising component (B) of said autodeposition composition is formed prior to forming an emulsion of said adduct in water.
- 21. A process according to claim 12 wherein the average particle size said aqueous dispersion is from 100 nm to 300 nm.
- 22. A process according to claim 12 wherein the contact in step (II) is for sufficiently long to form a film thickness of from 10 microns to 50 microns.
- 23. A process according to claim 12 wherein the curing in step (V) is done under heating at a temperature of from 100° C. to 300° C.
Parent Case Info
[0001] This application claims priority from provisional application Serial No. 60/136,048, filed May 26, 1999, and provisional application Serial No. 60/146,001, filed Jul. 28, 1999.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60136048 |
May 1999 |
US |
|
60146001 |
Jul 1999 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
09578935 |
May 2000 |
US |
Child |
10279160 |
Oct 2002 |
US |