Claims
- 1. A liquid aluminum stop leak comprising:
a) water, b) polyacrylic acid, c) 1,3-Di(hydroxymethyl)-5,5-dimethyl-2,4-imidazolidinedione, d) CH2OH, e) cellulose, f) polyester, g) aluminum flakes, h) ((Mg,Al)2Si4O10(OH)2), i) 2,2′ Iminodiethonaol 2,2′,2″ Nitrilotriethanol, and j) 2,2′-Iminodiethanol.
- 2. The liquid aluminum stop leak of claim 1 further comprising:
a) a silver white luster glitter having particles sized between 45-500 microns for making the stop leak easily visible, and b) a black mica; c) wherein the cellulose comprises fibers about 0.075 millimeters and about 0.3 millimeters in length and the polyester comprises fibers of about 0.3 millimeters.
- 3. The liquid aluminum stop leak of claim 2 wherein water soluble non-leafing coated aluminum particles comprising a size of about 32 microns and a metal content of about 60% are substitutable for some or all of the silver white luster glitter, the coated aluminum particles for preventing reactions between the aluminum and water.
- 4. A liquid aluminum stop leak comprising:
a) water, b) polyacrylic acid, c) 1,3-Di(hydroxymethyl)-5,5-dimethyl-2,4-imidazolidinedione, d) CH2OH, e) cellulose, f) polyester fibers, g) ((Mg,Al)2Si4O10(OH)2), h) 2,2′ Iminodiethonaol 2,2′,2″ Nitrilotriethanol, i) 2,2′-Iminodiethanol, j) a silver white luster pigment having particles sized between 45-500 microns, and k) black mica.
- 5. The liquid aluminum stop leak of claim 4 wherein the cellulose comprises fibers about 0.075 millimeters and about 0.3 millimeters in length.
- 6. The liquid aluminum stop leak of claim 4 wherein water soluble non-leafing coated aluminum particles comprising a size of about 32 microns and a metal content of about 60% are substitutable for some or all of the silver white luster glitter, the coated aluminum particles for preventing reactions between the aluminum and water.
- 7. A liquid aluminum stop leak comprising:
a) water in an amount of between about 86.38 to 96.87 by weight percent; b) polyacrylic acid in an amount of between about 0.08 and 0.12% by weight percent; c) 1,3-Di(hydroxymethyl)-5,5-dimethyl-2,4-imidazolidinedione in an amount of between about 0.1 and 0.2 weight percent; d) CH2OH in an amount of between about 0.5 and 6.0 by weight percent; e) cellulose fibers in an amount of between about 1.5 and 3.0 by weight percent; f) polyester fibers in an amount of between about 0.4 and 0.8 by weight percent; g) aluminum flakes in an amount of between about 0.0 and 0.8 by weight percent; h) a silver luster glitter in an amount of between about 0.1 and 0.8 by weight percent; i) a black mica pigment in an amount of between about 0.05 and 0.10 by weight percent; j) ((Mg,Al)2Si4O10(OH)2) in an amount of between about 0.1 and 0.9 by weight percent; and k) 2,2′ Iminodiethonaol 2,2′,2″ Nitrilotriethanol and 2,2′-Iminodiethanol in an amount of between about 0.3 and 0.9 by weight percent.
- 8. The liquid aluminum stop leak of claim 7 wherein the cellulose fibers comprise fibers of about 0.075 millimeters and about 0.3 millimeters in length and further wherein the polyester fibers comprise fibers of about 0.3 millimeters in length.
- 9. The liquid aluminum stop leak of claim 7 wherein water soluble non-leafing coated aluminum particles comprising a size of about 32 microns and a metal content of about 60% are substitutable for some or all of the silver white luster glitter, the coated aluminum particles for preventing reactions between the aluminum and water.
- 10. A method for making a liquid aluminum stop leak comprising the steps of:
warming water; blending in a polyacrylic acid; blending in 1,3-Di(hydroxymethyl)-5,5-dimethyl-2,4-imidazolidinedione; blending in CH2OH; blending in polyester; blending in cellulose fibers; blending in aluminum flakes; blending in((Mg,Al)2Si4O10(OH)2); blending in a silver white luster glitter comprising particles sized between about 45-500 microns; blending in a black mica; and blending in 2,2 Iminodiethonaol 2,2′,2″ Nitrilotriethanol and 2,2′-Iminodiethanol.
- 11. The liquid aluminum stop leak of claim 10 wherein the step of blending in the cellulose fibers further comprises blending in fibers comprising lengths of about 0.075 millimeters and about 0.3 millimeters, and wherein the step of blending in polyester fibers further comprises blending in polyester fibers comprising a length of about 0.3 millimeters.
- 12. The liquid aluminum stop leak of claim 10 wherein water soluble non-leafing coated aluminum particles comprising a size of about 32 microns and a metal content of about 60% are substitutable for some or all of the silver white luster glitter, the coated aluminum particles for preventing reactions between the aluminum and water.
- 13. A method of making a liquid aluminum stop leak comprising the steps of:
a) warming water, wherein the water is in an amount between about 86.38 and 96.87% by weight of the liquid aluminum stop leak; b) blending in a polyacrylic acid in an amount of between about 0.08 and 0.12% by weight with the water; c) blending in 1,3-Di(hydroxymethyl)-5,5-dimethyl-2,4-imidazolidinedione in an amount between about 0.10 and 0.20% by weight; d) blending in CH2OH, in an amount of about between about 0.50 and 6.00% by weight and cellulose an amount of between about 1.50 and 3.00% by weight, and polyester in an amount of between about 0.40 and 0.80% by weight; e) blending in aluminum flakes in an amount of between about 0.00 and 0.80% by weight; f) blending in a silver luster glitter in an amount of between about 0.10 and 0.80% by weight and a black mica pigment in an amount of between about 0.05 and 0.10% by weight; g) blending in ((Mg,Al)2Si4O10(OH)2) in an amount of about between about 0.10 and 0.90% by weight; and h) blending in 2,2′ Iminodiethonaol 2,2′,2″ Nitrilotriethanol and 2,2′-Iminodiethanol in an amount of between about 0.30 and 0.90% by weight.
- 14. The liquid aluminum stop leak of claim 13 wherein the cellulose further comprises fibers about 0.075 millimeters and about 0.3 millimeters in length, and the polyester comprises fibers of about 0.3 millimeters in length.
- 15. The liquid aluminum stop leak of claim 13 further wherein water soluble non-leafing coated aluminum particles comprising a size of about 32 microns and a metal content of about 60% are substitutable for some or all of the silver white luster glitter, the coated aluminum particles for preventing reactions between the aluminum and water.
- 16. A liquid aluminum engine block stop leak comprising:
a) water; b) sodium dioctyl sulfosuccinate; c) a water-dilutable, 30 percent active silicone emulsion; d) methanol; e) ((Mg,Al)2Si4O10(OH)2) f) cellulose; g) aluminum flakes; h) polyester; i) Na4O4Si; and j) a silver white luster glitter having particles sized between 45-500 microns and black mica for making the stop leak easily visible.
- 17. The liquid aluminum stop leak of claim 16 wherein the cellulose comprises fibers of about 0.075 millimeters and about 0.3 millimeters in length, and the polyester fibers are about 0.3 millimeters in length, the fibers for providing strength to the liquid aluminum stop leak.
- 18. The liquid aluminum stop leak of claim 16 wherein water soluble non-leafing coated aluminum particles comprising a size of about 32 microns and a metal content of about 60% are substitutable for some or all of the silver white luster glitter, the coated aluminum particles for preventing reactions between the aluminum and water.
- 19. A liquid aluminum engine block stop leak comprising:
a) water in an amount of between about 29.92 and 48.46% by weight; b) sodium dioctyl sulfosuccinate in an amount of between about 0.50 and 1.00% by weight; c) methanol in an amount of between about 0.50 to 6.0%.by weight; d) a water-dilutable, 30 percent active silicone emulsion in an amount of between about 0.40 and 0.10% by weight; e) ((Mg,Al)2Si4O10(OH)2) in an amount of between about 0.5 and 1.00% by weight; f) cellulose in an amount of between about 0.20 and 0.80% by weight and polyester in an amount of about between about 0.10 and 0.40% by weight; g) aluminum flakes in an amount of about between about 0.00 and 0.80 by weight; h) a silver white luster glitter comprising particles sized between about 45-500 microns in an amount of between about 0.1 and 0.80% and a black mica in an amount of between about 0.05 and 0.10% by weight, the glitter and mica for making the stop leak visible; and i) Na4O4Si in an amount of between about 50.00 and 60.00% by weight.
- 20. The liquid aluminum stop leak of claim 19 wherein the cellulose comprises fibers of about 0.075 millimeters and of about 0.3 millimeters in length and the polyester fibers comprise fibers of about 0.3 millimeters in length, the polyester and cellulose fibers for providing strength to the liquid aluminum stop leak.
- 21. The liquid aluminum stop leak of claim 19 wherein water soluble non-leafing coated aluminum particles comprising a size of about 32 microns and a metal content of about 60% are substitutable for some or all of the silver white luster glitter, the coated aluminum particles for preventing reactions between the aluminum and water.
- 22. A method for making a liquid aluminum engine block stop leak comprising the steps of:
a) providing and warming water; b) blending in sodium dioctyl sulfosuccinate and a water-dilutable 30 percent active silicone emulsion; c) blending in methanol; d) blending in ((Mg,Al)2Si4O10(OH)2) until uniform; e) blending in cellulose fibers, polyester fibers; and aluminum flakes; f) blending in aluminum flakes and ((Mg,Al) 2Si4O10(OH)2); g) blending in a silver white luster glitter comprising particles sized between 45-500 microns and black mica; and h) blending in sodium silicate.
- 23. The liquid aluminum stop leak of claim 22 wherein the cellulose comprises fibers of about 0.075 millimeters and of about 0.3 millimeters in length and wherein the polyester fibers comprise a length of about 0.3 millimeters, the cellulose and polyester fibers for providing strength to the liquid aluminum stop leak.
- 24. The liquid aluminum stop leak of claim 22 further wherein water soluble non-leafing coated aluminum particles comprising a size of about 32 microns and a metal content of about 60% are substitutable for some or all of the silver white luster glitter, the coated aluminum particles for preventing reactions between the aluminum and water.
- 25. The process of claim 22 further comprising the acts of adding and circulating the liquid aluminum engine block stop leak to an aluminum based heating/cooling system, and then flushing the heating/cooling system.
- 26. A liquid aluminum stop leak blend made by the process of:
warming water which is in an amount of between about 29.92 and 48.46% by weight of the stop leak; blending in sodium dioctyl sulfosuccinate in an amount between about 0.05 and 0.08% by weight; blending in a water-dilutable, 30% active silicone emulsion in an amount of between about 0.04 and 0.10% by weight; blending in methanol in an amount of between about 0.50 to 6.0% by weight; blending in ((Mg,Al)2Si4O10(OH)2) in an amount of between about 0.50 and 1.00% by weight; blending in cellulose in an amount of between about 0.20 and 0.80% by weight, and blending in polyester in an amount of between about 0.10 and 0.40% by weight; blending in aluminum flakes in an amount of between about 0.00 and 0.80% by weight; blending in a silver white luster glitter comprising particles sized between 45-500 microns in an amount of between about 0.10 and 0.80% by weight; and blending in a black mica in an amount of between about 0.05 and 0.10% by weight, the glitter and mica for making the stop leak easily visible, and blending in Na4O4Si in an amount of between about 50.00 and 60.00% by weight.
- 27. The liquid aluminum stop leak of claim 26 wherein the cellulose comprises fibers between about 0.075 millimeters and about 0.3 millimeters in length and the polyester comprises fibers of about 0.3 millimeters in length, the fibers for providing strength to the liquid aluminum stop leak.
- 28. The liquid aluminum stop leak of claim 26 further wherein water soluble non-leafing coated aluminum particles comprising a size of about 32 microns and a metal content of about 60% are substitutable for some or all of the silver white luster glitter, the coated aluminum particles for preventing reactions between the aluminum and water.
CLAIM OF PRIORITY
[0001] A claim of priority is made on U.S. provisional patent application Serial No. 60/323,653, filed on Sep. 20, 2001, which is hereby incorporated by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60323653 |
Sep 2001 |
US |