Claims
- 1. A composition comprising
about 8 to about 10 wt % molybdenum, about 2.8 to about 6 wt % aluminum, up to about 2 wt % vanadium, up to about 4 wt % niobium, with the balance being titanium, wherein the weight percents are based on the total weight of the alloy composition.
- 2. The composition of claim 1, wherein the composition is cold worked.
- 3. The composition of claim 2, wherein the composition, after cold working, has an elastic recovery of greater than or equal to about 75% of the applied change in length when the applied change in length is 2% of the original length.
- 4. The composition of claim 2, wherein the composition, after cold working, has an elastic recovery of greater than or equal to about 85% of the applied change in length when the applied change in length is 2% of the original length.
- 5. The composition of claim 2, wherein the composition, after cold working, has an elastic recovery of greater than or equal to about 50% of the applied change in length when the applied change in length is 4% of the original length.
- 6. The composition of claim 2, wherein the composition, after cold working, has an elastic recovery of greater than or equal to about 75% of the applied change in length when the applied change in length is 4% of the original length.
- 7. The composition of claim 2, wherein the composition, after cold working, has a reduction in the elastic modulus of greater than or equal to about 10% when compared with the elastic modulus of an equivalent heat treated composition.
- 8. The composition of claim 2, wherein the composition, after cold working, has a reduction in the elastic modulus of greater than or equal to about 20% when compared with the elastic modulus of an equivalent heat treated composition.
- 9. The composition of claim 2, wherein the composition, after cold working, has a reduction in the elastic modulus of greater than or equal to about 25% when compared with the elastic modulus of an equivalent heat treated composition.
- 10. The composition of claim 1, wherein the composition exhibits an elastic recovery of greater than or equal to about 50% of the applied change in length when the applied change in length is 4% of the original length.
- 11. The composition of claim 9, wherein the composition has a β phase or an α phase and a β phase.
- 12. The composition of claim 11, further comprising solution treating the composition.
- 13. The composition of claim 1, wherein the composition is cold worked and shows an elastic recovery of greater than or equal to about 75% of the initial strain when elastically deformed to a 2% initial strain.
- 14. The composition of claim 1, wherein the composition is cold worked and shows an elastic recovery of greater than or equal to about 50% of the initial strain when elastically deformed to a 4% initial strain.
- 15. An article manufactured from the composition of claim 1.
- 16. A composition comprising about 8.9 wt % molybdenum, about 3.03 wt % aluminum, about 1.95 wt % vanadium, about 3.86 wt % niobium, with the balance being titanium.
- 17. The composition of claim 16, wherein the composition is cold worked.
- 18. The composition of claim 16, having an elastic recovery of greater than or equal to about 75% of the applied change in length when the applied change in length is 2% of the original length.
- 19. The composition of claim 16, having an elastic recovery of greater than or equal to about 50% of the applied change in length when the applied change in length is 4% of the original length.
- 20. The composition of claim 16, wherein the composition, after cold working, has a reduction in the elastic modulus of greater than or equal to about 10% when compared with the elastic modulus of an equivalent heat treated composition.
- 21. A composition comprising about 9.34 wt % molybdenum, about 3.01 wt % aluminum, about 1.95 wt % vanadium, about 3.79 wt % niobium, with the balance being titanium.
- 22. The composition of claim 21, wherein the composition is cold worked.
- 23. The composition of claim 21, having an elastic recovery of greater than or equal to about 50% of the applied change in length when the applied change in length is 4% of the original length.
- 24. The composition of claim 21, having an elastic recovery of greater than or equal to about 75% of the applied change in length when the applied change in length is 2% of the original length.
- 25. The composition of claim 21, wherein the composition, after cold working, has a reduction in the elastic modulus of greater than or equal to about 10% when compared with the elastic modulus of an equivalent heat treated composition.
- 26. A method for making an article comprising:.
cold working a shape from a composition comprising about 8 to about 10 wt % molybdenum, about 2.8 to about 6 wt % aluminum, up to about 2 wt % vanadium, up to about 4 wt % niobium, with the balance being titanium, wherein the weight percents are based on the total weight of the alloy composition; solution heat treating the shape; and cooling the shape.
- 27. The method of claim 26, wherein the solution heat treating is conducted at a temperature below the isomorphic temperature for the composition.
- 28. The method of claim 26, wherein the solution heat treating is conducted at a temperature above the isomorphic temperature for the composition.
- 29. The method of claim 26, wherein the cooling is conducted in air.
- 30. The method of claim 26, wherein the shape is further heat aged at a temperature of about 350 to about 550° C.
- 31. The method of claim 30, wherein the heat ageing is conducted for a time period of 10 seconds to about 30 minutes.
- 32. A method comprising:
cold working a wire having a composition comprising about 8 to about 10 wt % molybdenum, about 2.8 to about 6 wt % aluminum, up to about 2 wt % vanadium, up to about 4. wt % niobium, with the balance being titanium, wherein the weight percents are based on the total weight of the alloy composition; solution treating the wire; and heat treating the wire.
- 33. The method of claim 32, wherein the cold working results in a reduction in cross-sectional area of about 5 to about 85%.
- 34. The method of claim 32, wherein the wire diameter is about 0.1 to about 10 millimeters.
- 35. The method of claim 32, wherein the heat treating is conducted at a temperature of about 500° C. to about 900° C.
- 36. The method of claim 32, wherein the wire is solution treated at a temperature of about 800 to about 1000° C.
- 37. The method of claim 32, wherein the article has a β phase or an α phase and a β phase.
- 38. The method of claim 32, wherein the article has an elastic recovery of greater than or equal to about 75% of the applied change in length when the applied change in length is 2% of the original length.
- 39. The method of claim 32, wherein the article has an elastic recovery of greater than or equal to about 50% of the applied change in length when the applied change in length is 4% of the original length.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority to U.S. Provisional Application 60/392,620 filed Jun. 27, 2002, the entire contents of which are incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
|
60392620 |
Jun 2002 |
US |