Phosphate conversion coating and process
A manganese modified low zinc phosphate conversion coating is applied to a metal substrate by forming a coating composition having zinc ions, phosphate ions, nickel ions, manganese ions, and, optionally, iron ions, with a free acid range of 0.7 to 1.5 for spray applications, and 3.5 to 5.5 for immersion applications. The nitrate concentration is very low, generally less than 2000 ppm. The coating is applied with generation of minimal sludge, at lower temperatures, generally 120-160° F.
1 . A manganese modified low zinc phosphate coating solution:
comprising water;
manganese ion;
nickel ion;
phosphate ion;
zinc ion;
nitrate ion; and
nitrite activator
wherein said solution has a free acid point greater than 0.7.
2 . The solution claimed in claim 1 wherein said free acid point is from 0.7 to 5.5 and the total acid value is from 15 to 35.
3 . The solution claimed in claim 1 wherein said free acid value is from 0.7 to 1.5 and the total acid value is from 15 to 45.
4 . The solution claimed in claim 1 wherein said free acid point is from 3.5 to 5.5 and the total acid value is from 14 to 45.
5 . The solution claimed in claim 1 having from about 50-1000 ppm dissolved nitrite ions and 50-3000 ppm dissolved nitrate ions and where in the ratio of nitrate to nitrite is from 3 to 10.
6 . The solution claimed in claim 5 comprising 1000-2000 ppm manganese ion; 1000-2000 ppm dissolved nickel ion; 2000-30,000 dissolved phosphate ion; and 500-3000 dissolved zinc ion.
7 . The solution claimed in claim 6 further including dissolved ferrous ions; 0-4000 ppm dissolved sodium ions; and 0-100 ppm dissolved sulfate ions.
8 . The composition claimed in claim 6 further comprising 500-3500 ppm dissolved fluoride ion.
9 . The solution claimed in claim 6 comprising about 430 ppm (±60%) dissolved nitrite ions; 1900 ppm (±60%) nitrate ions; 620 ppm (±60%) manganese ions; 900 ppm (±60%) nickel ions; 13,600 ppm (±60%) phosphate ions; and 1400 ppm (±60%) zinc ions.
10 . The solution claimed in claim 9 further including 50 ppm (±60%) ferrous ions; 1840 ppm (±60%) sodium ions; and 10 ppm (±60%) sulfate ions.
11 . The solution claimed in claim 10 further including 1550 ppm (±60%) fluoride ions.
12 . A method of coating a metallic substrate comprising applying to a surface of said substrate the solution of claim 1 .
13 . The method of claim 12 comprising spraying onto said substrate the solution of claim 1 wherein said solution has a free acid point of 0.7-1.5.
14 . The method of claim 12 wherein said substrate is immersed in a bath of said solution and wherein said solution has a free acid level of 3.5-5.5.
15 . A method of coating an aluminum substrate comprising applying to said substrate the composition claimed in claim 8 .
16 . The method claim claimed in claim 15 wherein said aluminum substrate is selected from the group consisting of aluminum and aluminized steel.
17 . A method of coating an aluminum substrate comprising applying to said substrate the solution claimed in claim 11 .
18 . The solution claimed in claim 1 wherein said solution includes 50-1000 ppm dissolved nitrite ions and 50-3000 ppm dissolved nitrate ions and wherein the total concentration of nitrite and nitrate ions is less than 4000 ppm and wherein the nitrate to nitrite range is from 3.8-5.