Synergistic corrosion inhibitor compositions
The invention comprises synergistic compositions of at least one metal polycarboxylate and lithium phosphate. The synergistic compositions are designed to be added to film-forming or other compositions to reduce the corrosion of various metal surfaces or substrates on which the synergistic compositions are applied.
1. Synergistic corrosion-resistant inhibitor composition consisting essentially of combinations of at least one metal polycarboxylate and 1.0 to 50 percent by weight of the composition of lithium phosphate wherein the metal of the polycarboxylate is selected from the group consisting of Groups IIa, IIIb, IVb, Vb, VIb, VIII, Ib, IIb and IIIa of the Periodic Table.
2. Synergistic corrosion-resistant inhibitor composition of claim 1 consisting essentially of a combination of at least one metal polycarboxylate selected from Group IIa and IIIb at the Periodic Table and from about 1.0 to 50 percent by weight of the composition of lithium phosphate.
3. The synergistic composition of claim 1 wherein the metal polycarboxylate is a linear, branched or aliphatic molecule.
4. The synergistic composition of claim 1 wherein the metal polycarboxylate ranges from about 50 to 99 weight percent of the synergistic composition.
5. Synergistic corrosion-resistant inhibitor composition consisting essentially of combinations of at least one metal polycarboxylate and 1.0 to 50 percent by weight of the composition of lithium phosphate wherein the metal polycarboxylate is a blend of magnesium oxalate and zinc oxalate.
6. Synergistic corrosion-resistant inhibitor composition consisting essentially of a combination of at least one metal polycarboxylate and 1.0 to 50 percent by weight of the composition of lithium phosphate wherein the metal polycarboxylate is a blend of zinc citrate and zinc oxalate.
7. Synergistic corrosion-resistant inhibitor composition consisting essentially of a combination of at least one metal polycarboxylate and 1.0 to 50 percent by weight of the composition of lithium phosphate wherein the metal polycarboxylate is zinc oxalate.
8. Synergistic corrosion-resistant inhibitor composition consisting essentially of a combination of at least one metal polycarboxylate and 1.0 to 50 percent by weight of the composition of lithium phosphate wherein the metal polycarboxylate is zinc citrate.
9. The process for improving metals resistance to corrosion which comprises coating said metals with a sufficient amount of binder which contains a synergistic blend of a metal polycarboxylate and lithium phosphate wherein the binder is paint.
10. A process for improving metals resistance to corrosion which comprises coating said metals with a sufficient amount of binder containing a synergistic blend of a metal polycarboxylate and from about 1.0 to 50 percent of the synergistic blend of lithium phosphate.
11. The process of claim 10 wherein the binder is an epoxy polymer.
12. The process of claim 10 wherein the binder is a polyurethane.
13. The process of claim 10 wherein the binder is a lubricant.