Claims
- 1. A crosslinking agent comprising an ungelled reaction product of the following:
(a) at least one aminoplast resin; (b) at least one polyfunctional polymer comprising functional groups reactive with aminoplast resin (a) and having a glass transition temperature of at least 15° C.; and (c) at least one compound different from (b) having active hydrogen groups reactive with aminoplast resin (a), said compound selected from at least one of:
(i) compounds having the following structure (I): 9 wherein
X is aromatic; R1, R2, and R3 can be the same or different and each independently represents H, (cyclo)alkyl having from 1 to 12 carbon atoms, aryl, alkaryl, aralkyl, or an active hydrogen-containing group, provided that at least one of R1, R2, and R3 represents an active hydrogen-containing group which is reactive with the aminoplast resin (a); (ii) compounds having the following structure (II) or (III): 10 where R′ and R″ are the same or different and each independently represents an aromatic group or an alkyl group having 1 to 12 carbon atoms; and (iii) compounds different from (i) and (ii) and having a melting point of at least 80° C., wherein said crosslinking agent has a glass transition temperature of at least 10° C. and is essentially free of functional groups which are reactive with aminoplast resin.
- 2. The crosslinking agent of claim 1, wherein the aminoplast resin (a) is or is derived from at least one of glycoluril, aminotriazine and benzoguanamine.
- 3. The crosslinking agent of claim 2, wherein the aminoplast resin (a) comprises alkoxylated aldehyde condensate of glycoluril.
- 4. The crosslinking agent of claim 3, wherein the aminoplast resin (a) comprises tetramethoxy methylglycoluril.
- 5. The crosslinking agent of claim 2, wherein the aminoplast resin (a) comprises (alkoxyalkyl) aminotriazine having one or less non-alkylated NH bond per triazine ring.
- 6. The crosslinking agent of claim 5, wherein the aminoplast resin (a) comprises (methoxymethyl) aminotriazine.
- 7. The crosslinking agent of claim 5, wherein the (alkoxyalkyl) aminotriazine has a degree of polymerization of 1.75 or less.
- 8. The crosslinking agent of claim 1, wherein the polyfunctional polymer (b) is selected from at least one of polyester polymers, polycarbonate polymers, acrylic polymers and polyether polymers.
- 9. The crosslinking agent of claim 8, wherein the functional groups of the polyfunctional polymer (b) are selected from hydroxyl, carboxylic acid, amine, amide, thiol, urea, carbamate, thiocarbamate, oxazoline, thiooxazoline, oxazolidone, oxazolidinone and mixtures thereof.
- 10. The crosslinking agent of claim 9, wherein the polyfunctional polymer (b) comprises one or more hydroxyl functional group-containing polymers.
- 11. The crosslinking agent of claim 10, wherein the polyfunctional polymer (b) comprises one or more hydroxyl functional group-containing polyester polymers.
- 12. The crosslinking agent of claim 11, wherein said hydroxyl functional group-containing polyester polymer comprises the reaction product of the following:
(i) at least one cycloaliphatic polyol, and (ii) at least one cyclic polycarboxylic acid or anhydride.
- 13. The crosslinking agent of claim 12, wherein the cycloaliphatic polyol (i) is selected from hydrogenated Bisphenol A, cyclohexyl dimethanol, cyclohexane diol and mixtures thereof.
- 14. The crosslinking agent of claim 12, wherein the cyclic polycarboxylic acid (ii) is selected from hexahydrophthalic acid, phthalic acid, isophthalic acid, terephthalic acid, anhydrides thereof and mixtures thereof.
- 15. The crosslinking agent of claim 12, wherein the polyester polymer comprises the reaction product of the following:
(i) hydrogenated Bisphenol A; and (ii) hexahydrophthalic acid or anhydride.
- 16. The crosslinking agent of claim 12, wherein the number average molecular weight of the hydroxyl functional group-containing polyester polymer ranges from 300 to 3000.
- 17. The crosslinking agent of claim 12, wherein the hydroxyl value of the hydroxyl functional group-containing polyester polymer is at least 130.
- 18. The crosslinking agent of claim 1, wherein the compound (c) comprises at least one compound having the structure (I).
- 19. The crosslinking agent of claim 18, wherein at least one of R1, R2, and R3 represents a group comprising an active hydrogen-containing group selected from hydroxyl, amide, amine, carboxylic acid, carbamate, urea, thiol, and mixtures thereof.
- 20. The crosslinking agent of claim 18, wherein at least one of R1, R2, and R3 represents a group comprising at least one hydroxyl group.
- 21. The crosslinking agent of claim 18, wherein the compound (c) is selected from benzyl alcohol, phenethyl alcohol, and mixtures thereof.
- 22. The crosslinking agent of claim 1, wherein the compound (c) comprises at least one of compound (c)(ii).
- 23. The crosslinking agent of claim 22, wherein the compound (c) comprises a hydroxyl functional group-containing compound having the following structure (II):
- 24. The crosslinking agent of claim 23, wherein one or both of R′ and R″ represent aromatic groups.
- 25. The crosslinking agent of claim 24, wherein the compound (c) comprises a compound selected from benzoin, hydroxycyclohexyl phenyl ketone and mixtures thereof.
- 26. The crosslinking agent of claim 25, wherein the compound (c) comprises benzoin.
- 27. The crosslinking agent of claim 25, wherein the compound (c) comprises hydroxycyclohexyl phenyl ketone.
- 28. The crosslinking agent of claim 23, wherein one or both of R′ and R″ are aromatic groups containing at least one heteroatom selected from furyl, pyridyl, methoxy phenyl, and dimethylaminophenyl groups.
- 29. The crosslinking agent of claim 23, wherein the active hydrogen group-containing compound (c) comprises a compound having the following structure (III):
- 30. The crosslinking agent of claim 1, wherein the compound (c) comprises at least one of compound (c)(iii).
- 31. The crosslinking agent of claim 30, wherein compound (c) comprises an aliphatic monofunctional alcohol selected from borneol, norborneol, isoborneol, 1-adamantanemethanol, 1-adamantanol, 2-methyl-2-adamantanol and 5-norbornen-2-ol.
- 32. The crosslinking agent of claim 1, wherein the compound (c) comprises a compound selected from benzoin, isoborneol, triphenylmethanol, N-tert-butylacrylamide, p-acetophenetidide and mixtures thereof.
- 33. The crosslinking agent of claim 1 comprising an ungelled reaction product of the following:
(a) at least one aminoplast resin comprising (alkoxyalkyl) aminotriazine having one or less non-alkylated NH bond per triazine ring; (b) at least one hydroxyl group-containing polymer having a glass transition temperature of at least 15° C.; and (c) at least one compound different from (b) selected from benzoin, isoborneol, benzyl alcohol and mixtures thereof, wherein said crosslinking agent has a glass transition temperature of at least 10° C. and is essentially free of hydroxyl groups.
- 34. A method for preparing a crosslinking agent, the method comprising the following steps:
(I) combining the following reactants:
(a) at least one aminoplast resin; (b) at least one polyfunctional polymer comprising functional groups reactive with aminoplast resin (a) and having a glass transition temperature of at least 15° C.; and (c) at least one compound different from (b) having active hydrogen groups reactive with aminoplast resin (a), said compound selected from at least one of:
(i) compounds having the following structure (I): 13 wherein X is aromatic; R1, R2, and R3 can be the same or different and each independently represents H, (cyclo)alkyl having from 1 to 12 carbon atoms, aryl, alkaryl, aralkyl, or an active hydrogen-containing group, provided that at least one of R1, R2, and R3 represents an active hydrogen-containing group which is reactive with the aminoplast resin (a); (ii) compounds having the following structure (II) or (III): 14 where R′ and R″ are the same or different and each independently represents an aromatic group or an alkyl group having 1 to 12 carbon atoms; an d (iii) compounds different from (i) and (ii) and having a melting point of at least 80° C., to form a reaction admixture; (II) heating the reaction admixture formed in step (1) to a temperature ranging from 90° C. to 135° C.; and (III) maintaining the temperature achieved in (II) for a time sufficient to obtain an ungelled reaction product having a glass transition temperature of at least 15° C. and which is essentially free of active hydrogen-containing groups as determined by infrared spectroscopy.
- 35. The method of claim 34, wherein the aminoplast resin (a) is or is derived from at least one of glycoluril, aminotriazine and benzoguanamine.
- 36. The method of claim 35, wherein the aminoplast resin (a) comprises alkoxylated aldehyde condensate of glycoluril.
- 37. The method of claim 35, wherein the aminoplast resin (a) comprises (alkoxyalkyl)aminotriazine having one or less non-alkylated NH bond per triazine ring.
- 38. The method of claim 34, wherein the polyfunctional polymer (b) is selected from at least one of polyester polymers, polycarbonate polymers, acrylic polymers and polyether polymers.
- 39. The method of claim 34, wherein the polyfunctional polymer (b) comprises one or more hydroxyl functional group-containing polymers.
- 40. The method of claim 39, wherein the polyfunctional polymer (b) comprises one or more hydroxyl functional group-containing polyester polymers.
- 41. The method of claim 34, wherein the compound (c) comprises at least one compound having the structure (I).
- 42. The method of claim 41, wherein at least one of R1, R2, and R3 represents a group comprising an active hydrogen-containing group selected from hydroxyl, amide, amine, carboxylic acid, carbamate, urea, thiol and mixtures thereof.
- 43. The method of claim 41, wherein at least one of R1, R2, and R3 represents a group comprising at least one hydroxyl group.
- 44. The method of claim 34, wherein the compound (c) is selected from benzyl alcohol, phenethyl alcohol, and mixtures thereof.
- 45. The method of claim 34, wherein the compound (c) comprises at least one of compound (c)(ii).
- 46. The method of claim 45, wherein the compound (c) comprises a compound selected from benzoin, hydroxycyclohexyl phenyl ketone, isoborneol and mixtures thereof.
- 47. The method of claim 34, wherein the compound (c) comprises at least one of compound (c)(iii).
- 48. The method of claim 34 comprising the following steps:
(I) combining the following reactants:
(a) at least one aminoplast resin comprising (alkoxyalkyl)aminotriazine having one or less non-alkylated NH bond per triazine ring; (b) at least one hydroxyl group-containing polymer having a glass transition temperature of at least 15° C.; and (c) at least one compound selected from benzoin, isoborneol, benzyl alcohol and mixtures thereof, to form a reaction admixture; (II) heating the reaction admixture formed in step (I) to a temperature ranging from 90° C. to 135° C.; and (III) maintaining the temperature achieved in (II) for a time sufficient to obtain an ungelled reaction product having a glass transition temperature of at least 10° C. which is essentially free of active hydrogen-containing groups as determined by infrared spectroscopy.
- 49. A curable powder coating composition comprising a solid particulate film-forming mixture of the following components:
(1) a polymer containing reactive functional groups, said polymer having a glass transition temperature of at least 30° C.; and (2) a crosslinking agent having functional groups reactive with the functional groups of component (1),
said crosslinking agent comprising an ungelled reaction product of the following reactants:
(a) at least one aminoplast resin; (b) at least one polyfunctional polymer comprising functional groups reactive with aminoplast resin (a) and having a glass transition temperature of at least 15° C.; and (c) at least one compound different from (b) having active hydrogen-containing groups reactive with aminoplast resin (a), said compound selected from at least one of:
(i) compounds having the following structure (I): 15 wherein X is aromatic; R1, R2, and R3 can be the same or different and each independently represents H, (cyclo)alkyl having from 1 to 12 carbon atoms, aryl, alkaryl, aralkyl, or an active hydrogen-containing group, provided that at least one of R1, R2, and R3 represents an active hydrogen-containing group which is reactive with the aminoplast resin (a); (ii) compounds having the following structure (II) or (III): 16 where R′ and R″ are the same or different and each independently represents an aromatic group or an alkyl group having 1 to 12 carbon atoms; and (iii) compounds different from (i) and (ii) and having a melting point of at least 80° C., wherein said crosslinking agent has a glass transition temperature of at least 10° C. and is essentially free of functional groups which are reactive with aminoplast resin.
- 50. The curable powder coating composition of claim 49, wherein the polymer (1) is selected from of acrylic polymers, polyester polymers, polyurethane polymers, polyepoxide polymers, polyether polymers and mixtures thereof.
- 51. The curable powder coating composition of claim 49, wherein the polymer (1) contains hydroxyl and/or carbamate functional groups.
- 52. The curable powder coating composition of claim 49, wherein the polymer (1) contains epoxy and/or hydroxyl functional groups.
- 53. The curable powder coating composition of claim 49, wherein the polymer (1) is present in the composition in an amount ranging from 20 to 80 weight percent based on total weight of the composition.
- 54. The curable powder coating composition of claim 49, wherein the aminoplast resin (a) is or is derived from at least one of glycoluril, aminotriazine and benzoguanamine.
- 55. The curable powder coating composition of claim 54, wherein the aminoplast resin (a) comprises alkoxylated aldehyde condensate of glycoluril.
- 56. The curable powder coating composition of claim 54, wherein the aminoplast resin (a) comprises (alkoxyalkyl)aminotriazine having one or less non-alkylated NH bond per triazine ring.
- 57. The curable powder coating composition of claim 49, wherein the polyfunctional polymer (b) is selected from at least one of polyester polymers, polycarbonate polymers, acrylic polymers and polyether polymers.
- 58. The curable powder coating composition of claim 49, wherein the polyfunctional polymer (b) comprises one or more hydroxyl functional group-containing polymers.
- 59. The curable powder coating composition of claim 58, wherein the polyfunctional polymer (b) comprises one or more hydroxyl functional group-containing polyester polymers.
- 60. The curable powder coating composition of claim 49, wherein the compound (c) comprises at least one of compound (c)(i).
- 61. The curable powder coating composition of claim 60, wherein at least one of R1, R2, and R3 represents a group comprising an active hydrogen-containing group selected from hydroxyl, amide, amine, carboxylic acid, carbamate, urea, thiol and mixtures thereof.
- 62. The curable powder coating composition of claim 60, wherein at least one of R1, R2, and R3 represents a group comprising at least one hydroxyl group.
- 63. The curable powder coating composition of claim 49, wherein the compound (c) comprises at least one of compound (c)(i) selected from benzyl alcohol, phenethyl alcohol and mixtures thereof.
- 64. The curable powder coating composition of claim 49, wherein the compound (c) comprises at least one of compound (c)(ii).
- 65. The curable powder coating composition of claim 49, wherein the compound (c) comprises at least one of compound (c)(iii).
- 66. The curable powder coating composition of claim 49, wherein the compound (c) comprises a compound selected from benzoin, hydroxycyclohexyl phenyl ketone, isoborneol and mixtures thereof.
- 67. The curable powder coating composition of claim 49, wherein the crosslinking agent (2) is present in an amount ranging from 5 to 95 percent by weight based on total weight of the composition.
- 68. The curable powder coating composition of claim 49 comprising the following components:
(1) a hydroxyl functional group-containing polymer having a glass transition temperature of at least 30° C.; and (2) a crosslinking agent having functional groups reactive with the hydroxyl functional groups of component (1), said crosslinking agent comprising an ungelled reaction product of the following reactants:
(a) at least one aminoplast resin comprising (alkoxyalkyl)aminotriazine having one or less non-alkylated NH bond per triazine ring; (b) at least one hydroxyl group-containing polymer having a glass transition temperature of at least 15° C.; and (c) at least one compound selected from benzoin, isoborneol, benzyl alcohol and mixtures thereof, wherein said crosslinking agent has a glass transition temperature of at least 10° C. and is essentially free of functional groups which are reactive with aminoplast resin.
- 69. The curable powder coating composition of claim 49 comprising a film-forming, solid particulate mixture of the following components:
(1) a polymer containing reactive epoxy functional groups, said polymer having a glass transition temperature of at least 30° C.; and (2) a crosslinking agent comprising the ungelled reaction product of the following reactants:
(a) at least one aminoplast resin comprising (alkoxyalkyl)aminotriazine having one or less non-alkylated NH bond per triazine ring; (b) at least one hydroxyl group-containing polymer having a glass transition temperature of at least 15° C.; and (c) at least one compound selected from benzoin, isoborneol, benzyl alcohol and mixtures thereof, wherein said crosslinking agent has a glass transition temperature of at least 10° C. and is essentially free of functional groups which are reactive with aminoplast resin; and (3) a crosslinking agent having carboxylic acid functional groups reactive with the epoxy groups of (1).
- 70. A multilayer composite coating composition comprising a base coat deposited from a film-forming coating base coating composition and a top coat over at least a portion of the base coat deposited from a curable powder top coating composition comprising a solid particulate film-forming mixture of the following components:
(1) a polymer containing reactive functional groups, said polymer having a glass transition temperature of at least 30° C.; and (2) a crosslinking agent having functional groups reactive with the functional groups of the polymer (1), said crosslinking agent comprising an ungelled reaction product of the following reactants:
(a) at least one aminoplast resin; (b) at least one polyfunctional polymer comprising functional groups reactive with aminoplast resin (a) and having a glass transition temperature of at least 15° C.; and (c) at least one compound different from (b) having active hydrogen-containing groups reactive with aminoplast resin (a), said compound selected from
(i) compounds having the following structure (I): 17 wherein X is aromatic; R1, R2, and R3 can be the same or different and each independently represents H, (cyclo)alkyl having from 1 to 12 carbon atoms, aryl, alkaryl, aralkyl, or an active hydrogen-containing group, provided that at least one of R1, R2, and R3 represents an active hydrogen-containing group which is reactive with the aminoplast resin (a); (ii) compounds having the following structure (II) or (III): 18 where R′ and R″ are the same or different and each independently represents an aromatic group or an alkyl group having 1 to 12 carbon atoms; and (iii) compounds different from (i) and (ii) and having a melting point of at least 80° C., and mixtures thereof, wherein said crosslinking agent has a glass transition temperature of at least 10° C. and is essentially free of functional groups which are reactive with aminoplast resin.
- 71. A substrate coated with the powder coating composition of claim 49.
- 72. A substrate coated with the multilayer composite coating composition of claim 70.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of U.S. patent application Ser. Nos. 09/667,756 and 09/666,575, both filed Sep. 21, 2000. Reference is made to related patent application Ser. Nos. ______; ______; ______; ______; and ______, filed concurrently herewith.
Continuation in Parts (2)
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Number |
Date |
Country |
Parent |
09667756 |
Sep 2000 |
US |
Child |
09919299 |
Jul 2001 |
US |
Parent |
09666575 |
Sep 2000 |
US |
Child |
09919299 |
Jul 2001 |
US |