Claims
- 1. A metal lamina consisting of a steel and non ferrous metal base and a precoat polymer layer consisting of a zinc phosphating layer modified by a polymer coating of about 20A-40A thickness of a polyelectrolyte selected from the group consisting of polyacrylic acid, polymethacrylic acid, polyitaconic acid, and poly-L-glutamic acid, said precoat polymer layer was applied from a zinc phosphate and polyelectrolyte composition wherein the polyelectrolyte is present in about 0.5-5% by weight and has a molecular weight of about 10,000-300,000.
- 2. The precoat according to claim 1 wherein the precoat is formed from an aqueous solution which contains 20-50% solid polymer.
- 3. The precoat according to claim 1 wherein the polyelectrolyte is polyacrylic acid with a molecular weight of about 2.times.10.sup.5.
- 4. The precoat according to claim 1 wherein the polyelectrolyte has an optimum value of 3% polyacrylic acid.
- 5. The precoat according to claim 1 wherein the polyelectrolyte is polymethacrylic acid.
- 6. The precoat according to claim 1 wherein the polyelectrolyte is polyitaconic acid.
- 7. The precoat according to claim 1 wherein the polyelectrolyte is poly-L-glutamic acid.
- 8. A laminate consisting of a metal base, a precoat polymer layer consisting of a zinc phosphating layer modified by a polymer coating of about 20.ANG.-40.ANG. thickness of a polyelectrolyte selected from the group consisting of polyacrylic acid, polymethacrylic acid, polyitaconic acid, and poly-L-glutamic acid, and a polymeric top coating, said precoat polymer layer was applied from a zinc phosphate and polyelectrolyte composition wherein the polyelectrolyte is present in about 0.5-5% by weight and has a molecular weight of about 10,000-300,000.
- 9. The laminate according to claim 8 wherein the top coating is selected from the group consisting of a polyurethane polymer and a furan polymer.
- 10. A method of coating a steel or non-ferrous base which comprises contacting said base with a precoat consisting of an aqueous treating agent of a zinc phosphate solution modified by a polyelectrolyte having a molecular weight of about 10,000-300,000 and a concentration of about 0.5-5% by weight wherein the said polyelectrolyte is selected from polyacrylic acid, polymethacrylic acid, polyitaconic acid, and poly-L-glutamic acid wherein said contacting is made up to 20 hours at a temperature of 60.degree.-80.degree. C. and where said precoat base is dried for at least 15 minutes at about 150.degree. C. thereby producing a polyelectrolyte coating in a thickness of about 20.ANG.-40.ANG..
- 11. The method according to claim 10 wherein the zinc phosphate solution is prepared from about 1-10 Zn.sub.3 (PO.sub.4).sub.2.2H.sub.2 O and about 99-90 parts H.sub.3 PO.sub.4 (15%).
- 12. The method according to claim 10 wherein the precoat is prepared from an aqueous solution containing 20-50% solid polymer.
- 13. The method according to claim 10 wherein the polyelectrolyte is polyacrylic acid.
- 14. The method according to claim 10 wherein the polyelectrolyte is polymethacrylic acid.
- 15. The method according to claim 10 wherein the polyelectrolyte is polyitaconic acid.
- 16. The method according to claim 10 wherein the polyelectrolyte is poly-L-glutamic acid.
- 17. A method according to claim 10 which comprises coating said pre coat base with a polymeric top coat.
Government Interests
The U.S. Government has rights in this invention pursuant to Contract Number DE-AC02-76CH00016, between the U.S. Department of Energy and Associated Universities Inc.
US Referenced Citations (7)