Claims
- 1. A superelastic alloy exhibiting shape memory or pseudoelastic properties, said alloy comprising Au and In and containing about 46.3 weight percent Au and about 54.7 weight percent In.
- 2. A superelastic alloy exhibiting shape memory or pseudoelastic properties, said alloy containing about 42 to about 50 weight percent Au and about 50 to about 58 weight percent In.
- 3. The superelastic Au—In2 alloy of claim 2 and one or more transition elements selected from the group consisting of Cu and Ni.
- 4. A shape memory alloy comprising a first shape memory phase containing Au and In and a second inactive carrier phase containing one or more elements selected from the group consisting of Au, In, Cu and Ni.
- 5. The shape memory alloy of claim 4 wherein the first phase contains from about 53 to about 56 weight percent In, the balance being Au.
- 6. The shape memory alloy of claim 4 wherein the first phase contains from about 54 to about 55 weight percent In, the balance being Au.
- 7. The shape memory alloy of claim 4 wherein the second phase contains from about 90 to about 100 weight percent In, the balance being Au.
- 8. The shape memory alloy of claim 4 wherein the second phase contains from about 0 to about 0.1 weight percent Au, about 95 to about 100 weight percent In and about 0 to about 5 weight percent Cu and/or Ni.
- 9. The shape memory alloy of claim 4 wherein the second phase is about 0-50 percent volume fraction of the overall alloy composition.
- 10. An article comprising the alloy of claim 1.
- 11. An article comprising the alloy of claim 2.
- 12. An article comprising the alloy of claim 3.
- 13. An article comprising the shape memory alloy of claim 4.
- 14. A gasket or seal comprising the alloy of claim 1.
- 15. A gasket or seal comprising the alloy of claim 2.
- 16. A gasket or seal comprising the alloy of claim 3.
- 17. A gasket or seal comprising the shape memory alloy of claim 4.
- 18. A method for increasing the corrosion resistance of an article having at least one surface comprising the steps of
a) forming the article from a superelastic Au—In2 intermetallic compound exhibiting shape memory or pseudoelastic properties, the Au—In2 intermetallic compound containing about 46.3 weight percent Au and about 54.7 weight percent In; and b) exposing the at least one surface of the article to mineral acid.
- 19. The method of claim 18 wherein the article further comprises about 42 to about 50 weight percent Au and about 50 to about 58 weight percent In.
- 20. The method of claim 18 wherein the article further comprises a first shape memory phase containing the Au—In2 intermetallic compound and a second inactive carrier phase containing one or more elements selected from the group consisting of Au, In, Cu and Ni.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority to U.S. Provisional Application Ser. No. 60/192,707, filed Mar. 28, 2000 and incorporated by reference herein.
Provisional Applications (1)
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Number |
Date |
Country |
|
60192707 |
Mar 2000 |
US |