Claims
- 1. An improved coating material having improved lubrication and hardness properties, comprising:
a hard nitride coating; and a soft metal homogeneously distributed within the hard nitride coating, the soft metal combining with the hard nitride coating to form a nonostructured, nanocomposite film, wherein the soft metal is selected from the group consisting of tin, antimony, silver, indium, gold and zinc and combinations thereof.
- 2. The coating material of claim 1, wherein the soft metal comprises tin.
- 3. The coating material of claim 1, wherein the soft metal comprises antimony.
- 4. The coating material of claim 1, wherein the soft metal comprises zinc.
- 5. The coating material of claim 1, wherein the hard nitride coating comprises molybdenum nitride.
- 6. The coating material of claim 5, wherein the hard nitride coating comprises δ-MoN.
- 7. The coating material of claim 5, wherein the hard nitride coating comprises γ-Mo2N.
- 8. The coating material of claim 1, wherein the hard nitride coating comprises molybdenum nitride and wherein tin, indium and antimony are homogenously distributed within the molybdenum nitride.
- 9. The coating material of claim 1, wherein the hard nitride coating comprises titanium nitride.
- 10. The coating material of claim 9, wherein the soft metal comprises antimony.
- 11. The coating material of claim 1, wherein the hard nitride comprises chromium nitride.
- 12. A superhard, low friction coating material, comprising:
a hard nitride; and a metallic substance comprising between about 0.5% and about 5% of the coating material and selected from the group consisting of tin, antimony, indium, silver, gold and zinc and combinations thereof, the metallic element homogeneously distributed within the hard nitride.
- 13. The coating material of claim 12, wherein the hard nitride is selected from the group consisting of titanium nitride, molybdenum nitride, zirconium nitride, and chromium nitride.
- 14. The coating material of claim 12, wherein the metallic substance comprises tin.
- 15. The coating material of claim 12, wherein the metallic substance comprises antimony.
- 16. The coating material of claim 12, wherein the metallic substance comprises zinc.
- 17. The coating material of claim 12, further comprising copper homogeneously distributed within the coating material.
- 18. A method for improving the hardness and frictional characteristics of a material, comprising the steps of:
providing a hard nitride coating; and homogeneously dispersing a metallic substance within the hard nitride coating, the metallic substance selected from the group consisting of tin, indium, antimony, bismuth, silver, gold and zinc and combinations thereof.
- 19. The method of claim 18, wherein the metallic substance comprises between about 0.5% and about 5% by weight of the resulting material.
- 20. The method of claim 18, wherein the hard nitride coating is selected from the group consisting of titanium nitride, molybdenum nitride, zirconium nitride, and chromium nitride.
- 21. The method of claim 18, further comprising the step of depositing the material on a steel, cast iron, or aluminum substrate.
- 22. The method of claim 21, wherein the material is deposited on the steel substrate using a physical vapor deposition technique.
- 23. The method of claim 18, further comprising the step of deposition the material on a cast iron or aluminum substrate.
- 24. The method of claim 23, wherein the material is deposited on the cast iron substrate using a physical vapor deposition technique.
Government Interests
[0001] This invention was made with government support under Contract No. W-31-109-ENG-38 awarded to the Department of Energy. The Government has certain rights in this invention.