Claims
- 1. A thermosetting composition comprising a co-reactable solid, particulate mixture of:
(a) a film forming material comprising functional groups; and (b) a crosslinking agent having at least two functional groups that are reactive with the functional groups in the film forming material (a) comprising a copolymer composition comprising at least 30 mol % of residues having the following alternating structural units:—[DM—AM]—wherein DM represents a residue from a donor monomer having the following structure (I): 9wherein R1 is linear or branched C1 to C4 alkyl; R2 is selected from the group consisting of methyl, linear, cyclic or branched C1 to C20 alkyl, alkenyl, aryl, alkaryl and aralkyl; and AM represents a residue from one or more acrylic acceptor monomers.
- 2. The thermosetting composition of claim 1, wherein the film forming material comprising functional groups (a) comprises a polymer comprised of residues of acrylate monomers, methacrylate monomers, and mixtures thereof.
- 3. The thermosetting composition of claim 1, wherein the functional groups of the film forming material (a) are selected from the group consisting of epoxy, carboxylic acid, hydroxy, thiol, isocyanate, capped isocyanate, amide, amine, aceto acetate, methylol, methylol ether, oxazoline carbamate, and beta-hydroxyalkylamide; the functional groups of the crosslinking agent (b) are selected from the group consisting of epoxy, carboxylic acid, hydroxy, thiol, amide, amine, oxazoline, aceto acetate, methylol, methylol ether, isocyanate, capped isocyanate, beta hydroxyalkamide, and carbamate; and wherein the functional groups of the film forming material (a) are reactive with those in the crosslinking agent (b).
- 4. The thermosetting composition of claim 2, wherein the polymer in (a) comprises residues of monomers containing epoxy functional groups and the acrylic acceptor monomers in the crosslinking agent (b) include one or more carboxylic acid functional acrylic monomers.
- 5. The thermosetting composition of claim 2, wherein the carboxylic acid functional acrylic monomers include acrylic acid.
- 6. The thermosetting composition of claim 1, in which the donor monomer is selected from the group consisting of isobutylene, diisobutylene, isoprene, and mixtures thereof.
- 7. The thermosetting composition of claim 6, wherein the copolymer in (b) has a number average molecular weight of from 500 to 30,000 and a polydispersity index of less than 4.
- 8. The thermosetting composition of claim 6, wherein the polymer in (a) has a number average molecular weight of from 500 to 30,000 and a polydispersity index of less than 4.
- 9. The thermosetting composition of claim 6, wherein the copolymer in (b) has a functional group equivalent weight of from 100 to 5,000 grams/equivalent.
- 10. The thermosetting composition of claim 6, wherein the polymer in (a) has a functional group equivalent weight of from 100 to 5,000 grams/equivalent.
- 11. The thermosetting composition of claim 6, wherein the equivalent ratio of functional group equivalents in the copolymer of crosslinking agent (b) to functional group equivalents in the polymer in (a) is within the range of 1:3 to 3:1.
- 12. The thermosetting composition of claim 6, wherein said crosslinking agent (b) is present in an amount of from 1 to 45 percent by weight, based on total weight of resin solids, and said film forming material (a) is present in an amount of from 55 to 99 percent by weight, based on total weight of resin solids.
- 13. The thermosetting composition of claim 6, wherein the crosslinking agent (b) further comprises one or more polycarboxylic acid functional materials selected from the group consisting of C4 to C20 aliphatic carboxylic acids, polymeric polyanhydrides, carboxylic acid functional polyesters, and carboxylic acid functional polyurethanes.
- 14. The thermosetting composition of claim 13, wherein the C4 to C20 aliphatic carboxylic acids are selected from the group consisting of dodecanedioic acid, azelaic acid, adipic acid, 1,6-hexanedioic acid, succinic acid, pimelic acid, sebacic acid, maleic acid, citric acid, itaconic acid, aconitic acid, and mixtures thereof.
- 15. The thermosetting composition of claim 6, wherein the acrylic acceptor monomers are one or more described by structure (III):
- 16. The thermosetting composition of claim 15, wherein the acrylic acceptor monomer is one or more selected from the group consisting of hydroxyethyl acrylate, hydroxypropyl acrylate, acrylic acid, dimethylaminoethyl acrylate, acrylamide, glycidyl acrylate, glycidyl methacrylate, n-butoxy methyl acrylamide, hydroxyethyl methacrylate, hydroxypropyl methacrylate, methacrylic acid, methacrylamide, 2-carbamoyloxyethyl acrylate, 2-carbamoyloxyethyl methacrylate, 2-carbamoyloxypropyl acrylate, 2-carbamoyloxypropyl methacrylate, 2-isocyanatoethyl acrylate, 2-isocyanatoethyl methacrylate, 2-isocyanatopropyl acrylate, 2-isocyanatopropyl methacrylate, 2-oxazoline ethyl acrylate, 2-oxazoline ethyl methacrylate, 2-oxazoline propyl acrylate, 2-oxazoline propyl methacrylate, aceto acetate ester of hydroxyethyl acrylate, aceto acetate ester of hydroxyethyl methacrylate, aceto acetate ester of hydroxypropyl methacrylate, and aceto acetate ester of hydroxypropyl acrylate.
- 17. A thermosetting composition comprising a co-reactable solid, particulate mixture of:
(a) a film forming material comprising an acrylic copolymer comprised of residues of epoxy functional monomers selected from the group consisting of glycidyl acrylate, glycidyl methacrylate, allyl glycidyl ether, vinyl glycidyl ether, and mixtures thereof; and residues of acrylate monomers and methacrylate monomers selected from the group consisting of linear and branched C1 to C20 alkyl, aryl, alkaryl, and aralkyl esters of acrylic acid, C1 to C20 alkyl, aryl, alkaryl, and aralkyl esters of methacrylic acid and mixtures thereof; and (b) a crosslinking agent having at least two functional groups that are reactive with the functional groups in the film forming material (a) comprising a copolymer comprised of at least 30 mol % of residues having the following alternating structural units:—[DM—AM]—wherein DM represents a residue from a donor monomer selected from the group consisting of isobutylene, diisobutylene, dipentene, isoprene, isoprenol, 1-octene, and mixtures thereof; and AM represents a residue from one or more acrylic acceptor monomers selected from the group consisting of acrylic acid and methacrylic acid.
- 18. A method of coating a substrate comprising:
(A) applying the thermosetting composition of claim 1 to the substrate; (B) coalescing the thermosetting composition to form a substantially continuous film; and (C) curing the thermosetting composition.
- 19. A method of coating a substrate comprising:
(A) applying the thermosetting composition of claim 17 to the substrate; (B) coalescing the thermosetting composition to form a substantially continuous film; and (C) curing the thermosetting composition.
- 20. A substrate coated using the method of claim 18.
- 21. A substrate coated using the method of claim 19.
- 22. A multi-component composite coating composition comprising:
(a) a base coat deposited from a pigmented film-forming composition; and (b) a transparent top coat applied over the base coat, wherein either the base coat or the transparent top coat or both is deposited from the thermosetting composition of claim 6.
- 23. The multi-component coating composition of claim 22, wherein the transparent top coat (b) is deposited from a film-forming thermosetting composition comprising the thermosetting composition of claim 6.
- 24. A multi-component composite coating composition comprising:
(a) a base coat deposited from a pigmented film-forming composition; and (b) a transparent top coat applied over the base coat, wherein either the base coat or the transparent top coat or both is deposited from the thermosetting composition of claim 17.
- 25. The multi-component coating composition of claim 24, wherein the transparent top coat (b) is deposited from the thermosetting composition of claim 17.
- 26. A multi-component composite coating composition comprising:
(a) a primer coat deposited by electrocoating a conductive substrate serving as a cathode in an electrical circuit comprising the cathode and an anode, the cathode and the anode being immersed in an aqueous electrocoating composition, by passing an electric current between the cathode and the anode to cause deposition of the electrocoating composition on the substrate as a substantially continuous film; (b) a base coat applied over the primer coat, wherein the base coat is deposited from a pigmented film-forming composition; and (c) a transparent top coat applied over the base coat, wherein the base coat or the transparent top coat or both is deposited from a clear film-forming thermosetting composition comprising the thermosetting composition of claim 6.
- 27. The multi-component coating composition of claim 26, wherein the transparent top coat (c) is deposited from the thermosetting composition of claim 6.
- 28. A multi-component composite coating composition comprising:
(a) a primer coat deposited by electrocoating a conductive substrate serving as a cathode in an electrical circuit comprising the cathode and an anode, the cathode and the anode being immersed in an aqueous electrocoating composition, by passing an electric current between the cathode and the anode to cause deposition of the electrocoating composition on the substrate as a substantially continuous film; (b) a base coat applied over the primer coat, wherein the base coat is deposited from a pigmented film-forming composition; and (c) a transparent top coat applied over the base coat, wherein the base coat or the transparent top coat or both is deposited from the thermosetting composition of claim 17.
- 29. The multi-component coating composition of claim 28, wherein the transparent top coat (c) is deposited from the thermosetting composition of claim 17.
- 30. The multi-component coating composition of claim 28, wherein after the primer coat in (a) is applied and. before the base coat in (b) is applied, a primer surfacer is applied over the primer coat.
- 31. The multi-component coating composition of claim 30, wherein the primer surfacer is spray applied.
- 32. A substrate coated with the multi-component composite coating composition of claim 22.
- 33. A substrate coated with the multi-component composite coating composition of claim 24.
- 34. A substrate coated with the multi-component composite coating composition of claim 26.
- 35. A substrate coated with the multi-component composite coating composition of claim 28.
- 36. A substrate coated with the multi-component composite coating composition of claim 30.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is a Continuation-in-Part of U.S. application Ser. No. 10/077,645, filed Feb. 15, 2002, entitled “Thermosetting Compositions Containing Alternating Copolymers of Isobutylene Type Monomers,” which is hereby incorporated by reference.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10077645 |
Feb 2002 |
US |
Child |
10357817 |
Feb 2003 |
US |