Claims
- 1. A novel thermosetting, solvent-based crosslinkable coating composition comprising:
- (A) bis-diene oligomer of number average molecular weight about 300-5000, having the general formula A--R--A', wherein A and A' are the same or different and each comprises a substituted or unsubstituted monovalent diene moiety;
- (B) bis-dieneophile oligomer, being other than said bis-diene oligomer, of number average molecular weight about 400-1200, having the general formula B--R'--B', wherein B and B' are the same or different and each comprises a substituted or unsubstituted dieneophile moiety reactive with said diene moieties A or A' at elevated cure temperature; said R and R' being the same or different and each having a bivalent hydrocarbon linking moiety which is substantially unreactive with A, A', B and B'; and wherein at least one of A--R--A' and B--R'--B' bears crosslinking functionality other than diene and dieneophille functionality;
- (C) crosslinking agent substantially reactive with said crosslinking functionality at said elevated cure temperature; and
- (D) organic solvent.
- 2. The novel thermosetting solvent-based crosslinkable coating composition of claim 1, wherein said bis-diene oligomer comprises the reaction product of aromatic or aliphatic diepoxide reactant with monohydroxy diene reactant, monocarboxy diene reactant or a compatible mixture thereof.
- 3. The novel thermosetting solvent-based crosslinkable coating composition of claim 2, wherein said diepoxide reactant consists essentially of terminal diepoxide.
- 4. The novel thermosetting solvent-based crosslinkable coating composition of claim 2, wherein said diepoxide reactant has a number average molecular weight (Mn) between about 100 and about 4500.
- 5. The novel thermosetting solvent-based crosslinkable coating composition of claim 2, wherein said diepoxide reactant is selected from the group consisting of Bisphenol A epichlorohydrin epoxy resin, 1,4-butanedioldiglycidyl ether, 4-vinylcyclohexene dioxide, cycloaliphatic diepoxy resin, hydantoin epoxy resin and a compatible mixture of any of them.
- 6. The novel thermosetting solvent-based crosslinkable coating composition of claim 2, wherein said bis-diene oligomer comprises the reaction product of said diepoxide reactant with a reactant selected from the group consisting of furfuryl alcohol, furoic acid, 1-hydroxymethyl-1,3-butadiene and a compatible mixture of any of them.
- 7. The novel thermosetting solvent-based crosslinkable coating composition of claim 1, wherein said bis-dieneophile oligomer consists essentially of bis-maleimides.
- 8. The novel thermosetting solvent-based crosslinkable coating composition of claim 1, wherein said bis-dieneophile oligomer consists essentially of the reaction product of acrylic or methacrylic acid with diepoxide reactant.
- 9. The novel thermosetting solvent-based crosslinkable coating composition of claim 1, wherein said bis-dieneophile oligomer consists essentially of the reaction product of aromatic or aliphatic diisocyanate reactant or a mixture thereof with mono-hydroxy or mono-amine ene reactant or a mixture thereof.
- 10. The novel thermosetting solvent-based crosslinkable coating composition of claim 9, wherein said diisocyanate reactant is selected from the group consisting of isophorone diisocyanate, toluene diisocyanate, alkanediisocyanate of about 3 to 8 carbons, diphenylmethane diisocyanate and a compatible mixture of any of them.
- 11. The novel thermosetting solvent-based crosslinkable coating composition of claim 9, wherein said ene reactant is selected from the group consisting of methylolmaleimide, hydroxypropylmethacrylate, allyl alcohol, allyl amine, hydroxyethylmethacrylate, hydroxyethylacrylate and a compatible mixture of any of them.
Parent Case Info
This is a Division of application Ser. No. 456,067, filed Jan. 6, 1983, now U.S. Pat. No. 4,515,926.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
4514548 |
Holubka |
Apr 1985 |
|
4514549 |
Holubka |
Apr 1985 |
|
Divisions (1)
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Number |
Date |
Country |
Parent |
456067 |
Jan 1983 |
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