Claims
- 1. An aqueous liquid working composition for forming a phosphate conversion coating on a metal surface by spontaneous chemical reaction upon contact with said metal surface, said aqueous liquid working composition comprising water and the following components:(A) dissolved phosphate anions that have a concentration in the working composition within a range from about 1.5 g/l to about 4.5 g/l; (B) dissolved zinc cations that have a concentration in the working composition that is within a range from about 0.60 g/l to about 1.30 g/l; (C) dissolved manganese(II) cations that have a concentration in the working composition that is within a range from about 0.35 g/l to about 0.55 g/l; (D) at least one of: (i) dissolved nickel(II) cations that have a concentration in the working composition within a range from about 0.10 g/l to about 1.5 g/l; and (ii) dissolved copper cations that have a concentration in the working composition that is within a range from about 0.0011 g/l to about 0.025 g/l; (E) dissolved fluoride-containing anions that have a stoichiometric equivalent as fluoride in the working composition that is within a range from about 0.45 g/l to about 0.80 g/l; (F) dissolved nitrate ions that have a concentration in the working composition of from about 3.5 g/l to about 8.8 g/l.; and (G) dissolved accelerator consisting of at least one substance, at the specified concentration in the working composition, selected from the group consisting of: (i) about 0.3 g/l to about 4 g/l of chlorate ions; (ii) about 0.01 g/l to about 0.2 g/l of nitrite ions; (iii) about 0.05 g/l to about 2 g/l of m-nitrobenzene sulphonate ions; (iv) about 0.05 g/l to about 2 g/l of m-nitrobenzoate ions; (v) about 0.05 g/l to about 2 g/l of p-nitrophenol; (vi) about 0.005 g/l to about 0.15 g/l of hydrogen peroxide in free or bound form; (vii) about 0.1 g/l to about 10 g/l of hydroxylamine in free or bound form; and (viii) about 0.1 g/l to about 10 g/l of reducing sugar; wherein said aqueous liquid working composition has a Free Acid value within a range from about −0.5 points to about 1.20 points.
- 2. An aqueous liquid working composition according to claim 1 wherein the dissolved phosphate anions (A) concentration is within a range from about 1.5 g/l to about 2.5 g/l.
- 3. An aqueous liquid working composition according to claim 1 wherein the dissolved zinc cations (B) concentration is within a range from about 0.80 g/l to about 1.20 g/l.
- 4. An aqueous liquid working composition according to claim 1 wherein the dissolved manganese cations (C) concentration is within a range from about 0.35 g/l to about 0.50 g/l.
- 5. An aqueous liquid working composition according to claim 1 wherein the dissolved nickel cations (D)(i) concentration is within a range from about 1.5 g/l to about 2.5 g/l.
- 6. An aqueous liquid working composition according to claim 1 wherein the dissolved fluorine-containing anions (E) concentration is within a range from about 0.50 g/l to about 0.80 g/l.
- 7. An aqueous liquid working composition according to claim 1 wherein the dissolved nitrate anions (F) concentration is within a range from about 0.39 g/l to about 6.50 g/l.
- 8. An aqueous liquid working composition according to claim 1 wherein at least one accelerator component (G) is selected from nitrite and hydrogen peroxide.
- 9. An aqueous liquid working composition according to claim 1 wherein at least one accelerator component (G) is hydroxylamine.
- 10. An aqueous liquid working composition for forming a phosphate conversion coating on a metal surface by spontaneous chemical reaction upon contact with said metal surface, said aqueous liquid working composition having been made by mixing with water at least the following substances:(A) a source of dissolved phosphate anions in an amount corresponding to a concentration of dissolved phosphate anions in the working composition within a range from about 1.5 g/l to about 4.5 g/l; (B) a source of dissolved zinc cations in an amount corresponding to a concentration of dissolved zinc cations in the working composition that is within a range from about 0.60 g/l to about 1.30 g/l; (C) a source of dissolved manganese(II) cations in an amount corresponding to a concentration of dissolved manganese(II) cations in the working composition that is within a range from about 0.35 g/l to about 0.55 g/l; (D) a source of at least one of: (i) dissolved nickel(II) cations in an amount corresponding to a concentration of dissolved nickel(II) cations in the working composition within a range from about 0.10 g/l to about 1.5 g/l; and (ii) dissolved copper cations in an amount corresponding to a concentration of dissolved copper cations in the working composition that is within a range from about 0.0011 g/l to about 0.025 g/l; (E) a source of dissolved fluorine-containing anions in an amount corresponding to a stoichiometric equivalent as fluoride in the working composition of dissolved fluorine-containing anions that is within a range from about 0.45 g/l to about 0.80 g/l; (F) a source of dissolved nitrate ions in an amount corresponding to a concentration of dissolved nitrate ions in the working composition of from about 3.5 g/l to about 8.8 g/l; and (G) a source of dissolved accelerator consisting of at least one substance, at the specified concentration of such dissolved ion in the working composition, selected from the group consisting of: (i) about 0.3 g/l to about 4 g/l of chlorate ions; (ii) about 0.01 g/l to about 0.2 g/l of nitrite ions; (iii) about 0.05 g/l to about 2 g/l of m-nitrobenzene sulphonate ions; (iv) about 0.05 g/l to about 2 g/l of m-nitrobenzoate ions; (v) about 0.05 g/l to about 2 g/l of p-nitrophenol; (vi) about 0.005 g/l to about 0.15 g/l of hydrogen peroxide in free or bound form; (vii) about 0.1 g/l to about 10 g/l of hydroxylamine in free or bound form; and (viii) about 0.1 g/l to about 10 g/l of reducing sugar; wherein said aqueous liquid working composition has a Free Acid value within a range from about −0.5 points to about 1.20 points.
- 11. An aqueous liquid working composition according to claim 10 wherein the dissolved phosphate anions (A) concentration is within a range from about 1.5 g/l to about 2.5 g/l.
- 12. An aqueous liquid working composition according to claim 10 wherein the dissolved zinc cations (B) concentration is within a range from about 0.80 g/l to about 1.20 g/l.
- 13. An aqueous liquid working composition according to claim 10 wherein the dissolved manganese cations (C) concentration is within a range from about 0.35 g/l to about 50 g/l.
- 14. An aqueous liquid working composition according to claim 10 wherein the dissolved nickel cations (D)(i) concentration is within a range from about 1.5 g/l to about 2.5 g/l.
- 15. An aqueous liquid working composition according to claim 10 wherein the dissolved nitrate anions (F) concentration is within a range from about 0.39 g/l to about 6.50 g/l.
- 16. An aqueous liquid working composition according to claim 15 wherein the dissolved fluorine-containing anions (E) concentration is within a range from about 0.50 g/l to about 0.80 g/l.
- 17. An aqueous liquid working composition according to claim 10 wherein at least one accelerator component (G) is selected from nitrite and hydrogen peroxide.
- 18. An aqueous liquid working composition according to claim 10 wherein at least one accelerator component (G) is hydroxylamine.
- 19. A process of forming a phosphate conversion coating on a metal substrate by contacting said metal substrate with an aqueous liquid composition aqueous liquid working composition having been made by mixing with water at least the following substances:(A) a source of dissolved phosphate anions in an amount corresponding to a concentration of dissolved phosphate anions in the working composition within a range from about 1.5 g/l to about 4.5 g/l; (B) a source of dissolved zinc cations in an amount corresponding to a concentration of dissolved zinc cations in the working composition that is within a range from about 0.60 g/l to about 1.30 g/l; (C) a source of dissolved manganese(II) cations in an amount corresponding to a concentration of dissolved manganese(II) cations in the working composition that is within a range from about 0.35 g/l to about 0.55 g/l (D) a source of at least one of: (i) dissolved nickel(II) cations in an amount corresponding to a concentration of dissolved nickel(II) cations in the working composition within a range from about 0.10 g/l to about 1.5 g/l; and (ii) dissolved copper cations in an amount corresponding to a concentration of dissolved copper cations in the working composition that is within a range from about 0.0011 g/l to about 0.025 g/l; (E) a source of dissolved fluorine-containing anions in an amount corresponding to a stoichiometric equivalent as fluoride in the working composition of dissolved fluorine-containing anions that is within a range from about 0.45 g/l to about 0.80 g/l; (F) a source of dissolved nitrate ions in an amount corresponding to a concentration of dissolved nitrate ions in the working composition of from about 3.5 g/l to about 8.8 g/l; and (G) a source of dissolved accelerator consisting of at least one substance, at the specified concentration of such dissolved ion in the working composition, selected from the group consisting of: (i) about 0.3 g/l to about 4 g/l of chlorate ions; (ii) about 0.01 g/l to about 0.2 g/l of nitrite ions; (iii) about 0.05 g/l to about 2 g/l of m-nitrobenzene sulphonate ions; (iv) about 0.05 g/l to about 2 g/l of m-nitrobenzoate ions; (v) about 0.05 g/l to about 2 g/l of p-nitrophenol; (vi) about 0.005 g/l to about 0.15 g/l of hydrogen peroxide in free or bound form; (vii) about 0.1 g/l to about 10 g/l of hydroxylamine in free or bound form; and (viii) about 0.1 g/l to about 10 g/l of reducing sugar; wherein said aqueous liquid working composition has a Free Acid value within a range from about −0.5 points to about 1.20 points.
- 20. A process according to claim 19 wherein the dissolved phosphate anions (A) concentration is within a range from about 1.5 g/l to about 2.5 g/l.
- 21. A process according to claim 19 wherein the dissolved zinc cations (B) concentration is within a range from about 0.80 g/l to about 1.20 g/l.
- 22. A process according to claim 19 wherein the dissolved manganese cations (C) concentration is within a range from about 0.35 g/l to about 50 g/l.
- 23. A process according to claim 19 wherein the dissolved nickel cations (D)(i) concentration is within a range from about 1.5 g/l to about 2.5 g/l.
- 24. A process according to claim 19 wherein the dissolved fluorine-containing anions (E) concentration is within a range from about 0.50 g/l to about 0.80 g/l.
- 25. A process according to claim 19 wherein the dissolved nitrate anions (F) concentration is within a range from about 0.39 g/l to about 6.50 g/l.
- 26. A process according to claim 19 wherein at least one accelerator component (G) is selected from nitrite and hydrogen peroxide.
- 27. A process according to claim 19 wherein at least one accelerator component (G) is hydroxylamine.
- 28. A process according to claim 19 wherein the temperature of said aqueous liquid working composition is maintained within the range from about 35° C. to about 61° C.
- 29. A process according to claim 19 wherein the substrate has a surface with a predominant content of iron, zinc, or aluminum and the coating weight formed on said surface by the process is within a range from about 0.80 g/ m2to about 2.8 g/m2 if the surface has a predominant content of iron, within a range from about 1.0 g/m2 to about 4.1 g/m2 if the surface has a predominant content of zinc, and within a range from about 1.0 g/m2 to about 2.4 g/m2 if the surface has a predominant content of aluminum.
- 30. A process according to claim 19 wherein the substrate has a surface with a predominant content of iron, zinc, or aluminum and the coating weight formed on said surface by the process is within a range from about 0.80 g/m2 to about 2.8 g/m2 if the surface has a predominant content of iron, within a range from about 1.0 to about 4.1 g/m2 if the surface has a predominant content of zinc, and within a range from about 1.0 g/m2 to about 2.4 g/m2 if the surface has a predominant content of aluminum.
Parent Case Info
This application is the U.S. National Phase application of and claims priority from International Application Number PCT/US00/30118, filed Nov. 1, 2000, which was published under PCT Article 21(2) in English. This application also claims priority from U.S. provisional application Ser. No. 60/163,538, filed Nov. 4, 1999, which priority was also claimed in said International Application.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/US00/30118 |
|
WO |
00 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO01/32953 |
5/10/2001 |
WO |
A |
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Date |
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EP |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/163538 |
Nov 1999 |
US |