Claims
- 1. A metallic member epoxy based adhesive coating, comprising:
a first epoxy material containing approximately 25% solids by weight; and a second curative material containing about 32% solids by weight.
- 2. The epoxy based adhesive coating of claim 1, wherein the first epoxy material includes about 3% to about 35% liquid Diglycidylether of Bisphenol-A, about 35% to about 60% solid Diglycidylether of Bisphenol-A, about 10% to about 30% Novolac-Epoxy, and about 5% to about 18% Solid Carboxy-Terminated Acrylonitrile-Butadiene Rubber.
- 3. The epoxy based adhesive coating of claim 2, wherein the first epoxy material further includes about 0% to about 12% Liquid Carboxy-Terminated Acrylonitrile-Butadiene Rubber.
- 4. The epoxy based adhesive coating of claim 1, wherein the second curative material includes about 0% to about 100% 4,4′-Diaminodiphenylsulfone, about 0% to about 100% 3,3′-Diaminodiphenylsulfone, and about 0% to about 0.2% Chromium Octotate.
- 5. The epoxy based adhesive coating of claim 4, wherein the second curative material further includes about 70% to about 100% Dicyandiamide.
- 6. The epoxy based adhesive coating of claim 5, further including about 0% to about 30% 3-(3,4-Dichlorophenyl)-1,1-dimethylurea, and about 0% to about 30% substituted urea.
- 7. The epoxy based adhesive coating of claim 6, wherein the second curative material further includes about 0% to about 0.2% Chromium Octotate.
- 8. The epoxy based adhesive coating of claim 1, wherein the first epoxy material and the second curative material are mixed at a ratio of about 10 parts of the first epoxy material to about 1 part of the second curative material.
- 9. The epoxy based adhesive coating of claim 1, wherein the first epoxy material includes about 3% to about 35% liquid Diglycidylether of Bisphenol-A, about 35% to about 60% solid Diglycidylether of Bisphenol-A, about 10% to about 30% Novolac-Epoxy, and about 5% to about 18% Solid Carboxy-Terminated Acrylonitrile-Butadiene Rubber.
- 10. A laminate structure, comprising:
a metallic member; and an epoxy based adhesive coating adjacent the metallic member, the epoxy based adhesive coating including a first epoxy material containing approximately 25% solids by weight and a second curative material containing about 32% solids by weight.
- 11. The laminate structure of claim 10, wherein the first epoxy material includes about 3% to about 35% liquid Diglycidylether of Bisphenol-A, about 35% to about 60% solid Diglycidylether of Bisphenol-A, and about 10% to about 30% Novolac-Epoxy, about 5% to about 18% Solid Carboxy-Terminated Acrylonitrile-Butadiene Rubber.
- 12. The laminate structure of claim 10, wherein the first epoxy material further includes about 0% to about 12% Liquid Carboxy-Terminated Acrylonitrile-Butadiene Rubber.
- 13. The laminate structure of claim 10, wherein the second curative material includes about 0% to about 100% 4,4′-Diaminodiphenylsulfone, about 0% to about 100% 3,3′-Diaminodiphenylsulfone, and about 0% to about 0.2% Chromium Octotate.
- 14. The laminate structure of claim 12, wherein the second curative material further includes about 70% to about 100% Dicyandiamide, about 0% to about 30% 3-(3,4-Dichlorophenyl)-1,1-dimethylurea, about 0% to about 30% substituted urea, and about 0% to about 0.2% Chromium Octotate.
- 15. The laminate structure of claim 10, wherein the metallic member is titanium.
- 16. The laminate structure of claim 10, further including a graphite fiber member interposed within the epoxy based adhesive coating.
- 17. The laminate structure of claim 10, wherein the epoxy based adhesive coating is about 0.0010 inches thick.
- 18. A method of reinforcing a metallic foil, the method comprising:
preparing a surface of a metallic foil to receive an epoxy based adhesive coating; and applying the epoxy based adhesive coating, wherein the adhesive coating is a two part epoxy having a first epoxy material containing approximately 25% solids by weight and a second curative material containing about 32% solids by weight.
- 19. The method of claim 18, wherein the metallic foil is at least one of a titanium or titanium alloy.
- 20. The method of claim 18, wherein the first epoxy material further includes about 0% to about 12% Liquid Carboxy-Terminated Acrylonitrile-Butadiene Rubber.
- 21. The method of claim 18, wherein the second curative material includes about 0% to about 100% 4,4′-Diaminodiphenylsulfone, about 0% to about 100% 3,3′-Diaminodiphenylsulfone, and about 0% to about 0.2% Chromium Octotate.
- 22. The method of claim 18, wherein the epoxy based adhesive coating is about 0.0010 inches thick.
RELATED PATENTS
[0001] The related patents are U.S. Pat. No. 5,814,137 issued Sep. 29, 1998, U.S. Pat. No. 5,849,110 issued Dec. 15, 1998, U.S. Pat. No. 5,869,141 issued Feb. 9, 1999, U.S. Pat. No. 5,939,197 issued Aug. 17, 1999, U.S. Pat. No. 5,958,578, and U.S. Pat. No. 6,037,060 issued Mar. 14, 2000, all of which are incorporated by reference herein.
[0002] Additionally, this application incorporates by reference application titled “Method for Preparing a Metal Material for Bonding” invented by Kay Y. Blohowiak et al.; attorney docket BOEI-1-1032.