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High transformation temperature shape memory alloy 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • C22C-014/00
  • C22C-019/00
출원번호 US-0609377 (1990-11-05)
발명자 / 주소
  • AbuJudom
  • II David N. (Brookfield WI) Thoma Paul E. (Cedarburg WI) Kao Ming-Yuan (Fox Point WI) Angst David R. (West Allis WI)
출원인 / 주소
  • Johnson Service Company (Milwaukee WI 02)
인용정보 피인용 횟수 : 50  인용 특허 : 0

초록

A high temperature titanium-based shaped memory alloy contains from at least 0.1 at. % hafnium. Articles formed from the disclosed alloy have high transformation temperatures. The alloy of the invention can be successfully hot and cold worked to make articles such as springs and wires.

대표청구항

An article made of a shape memory titanium-based alloy, wherein said alloy has been subjected to a memory-imparting heat treatment, and the alloy consists essentially of a composition of the general formula: MATi(100-A-B)XB wherein M consists essentially of nickel, A is from about 30 to 51 at. %, B

이 특허를 인용한 특허 (50)

  1. Johnson, Alfred David, Biocompatible copper-based single-crystal shape memory alloys.
  2. Johnson, Alfred David, Biocompatible copper-based single-crystal shape memory alloys.
  3. Brown Brian J. ; Burmeister Paul H. ; Euteneuer Charles L., Endovascular stent and method.
  4. Watters, David G.; Huestis, David L.; Bahr, Alfred J.; Vidmar, Robert J., Event-recording devices with identification codes.
  5. Johnson,A. David, Eyeglass frame.
  6. Johnson, Alfred David, Fire sprinkler valve actuator.
  7. Johnson, Alfred David; Gilbertson, Roger Graham; Martynov, Valery, Frangible shape memory alloy fire sprinkler valve actuator.
  8. Simpson, John A.; Boylan, John F., Guide wire utilizing a cold worked nickel—titanium—niobium ternary alloy.
  9. Boylan, John Francis; Lin, Zhi Cheng, Heat treatment for cold worked nitinol to impart a shape setting capability without eventually developing stress-induced martensite.
  10. Noebe,Ronald D.; Draper,Susan L.; Nathal,Michael V.; Garg,Anita, High work output NI-TI-PT high temperature shape memory alloys and associated processing methods.
  11. Johnson, Alfred David, Hyperelastic shape setting devices and fabrication methods.
  12. Johnson, Alfred David, Hyperelastic shape setting devices and fabrication methods.
  13. Johnson, Alfred David; Martynov, Valery; Bokaie, Michael D.; Gray, George R., Hyperelastic shape setting devices and fabrication methods.
  14. Ma, Xiaoguang, Magnetic data storage system.
  15. Simpson, John A.; Boylan, John F., Medical device utilizing a nickel-titanium ternary alloy having high elastic modulus.
  16. Johnson, Alfred David, Method and devices for preventing restenosis in cardiovascular stents.
  17. Rasmussen, Gregory Keller; Chang, Fenglian; Zhang, Jinping; Gold, Terry Jack, Method for producing NiTiHf alloy films by sputtering.
  18. Johnson, Alfred D.; Bachmann, Walter A., Method of alloying reactive components.
  19. Johnson, Alfred David; Bachmann, Walter A., Method of alloying reactive components.
  20. Johnson, Alfred David; Bachmann, Walter A., Method of alloying reactive components.
  21. Johnson, Alfred David; Bachmann, Walter A., Method of alloying reactive components.
  22. Mazzaferri, Richard James, Methods and systems for generating playback instructions for playback of a recorded computer session.
  23. Ryman, Paul Adam, Methods and systems for in-session playback on a local machine of remotely-stored and real time presentation layer protocol data.
  24. Simpson, John A.; Boylan, John F., Methods for manufacturing a guide wire utilizing a cold worked nickel-titanium-niobium ternary alloy.
  25. Johnson, A. David; Martynov, Valery, Methods of fabricating high transition temperature SMA, and SMA materials made by the methods.
  26. Manuel, Michele Viola; Hsu, Derek Hsen Dai, Nickel titanium alloys, methods of manufacture thereof and article comprising the same.
  27. Johnson,A. David; Bokaie,Michael; Martynov,Valery, Non-explosive releasable coupling device.
  28. Noebe, Ronald Dean; Draper, Susan L.; Nathal, Michael V.; Crombie, Edwin A., Precipitation hardenable high temperature shape memory alloy.
  29. Gregory K. Rasmussen ; Fenglian Chang ; Terry J. Gold ; Maryann G. Seibert ; Jinping Zhang, Process for deposition of sputtered shape memory alloy films.
  30. DiCarlo Paul ; Walak Steven E., Process for the improved ductility of nitinol.
  31. DiCarlo, Paul; Walak, Steven E., Process for the improved ductility of nitinol.
  32. Gamdur Singh Mann ; Carlos Augusto Valdes ; Terry Jack Gold ; Jinping Zhang ; Fenglian Chang ; Gregory Keller Rasmussen, Production of binary shape-memory alloy films by sputtering using a hot pressed target.
  33. Rasmussen, Gregory Keller; Chang, Fenglian; Zhang, Jinping; Gold, Terry Jack, Production of ternary shape-memory alloy films by sputtering using a hot pressed target.
  34. Diamant, Valery; Koren, Dan; Lotkov, Alexander I.; Sivokha, Vladimir P.; Meysner, Liydmila L.; Grishkov, Viktor N.; Voronin, Vladimir P., Radiopaque alloy and medical device made of this alloy.
  35. Pichulo Robert O. ; Rasmussen Gregory Keller ; McClanahan Mark Ray, Rotating film carrier and aperture for precision deposition of sputtered alloy films.
  36. Watters, David G.; Huestis, David L.; Bahr, Alfred J.; Priyantha, Namal; Jayaweeera, Palitha, Sensor devices for structural health monitoring.
  37. Johnson, A David, Shape memory alloy thin film, method of fabrication, and articles of manufacture.
  38. Johnson, A. David; Bokaie, Michael; Martynov, Valery, Single crystal shape memory alloy devices and methods.
  39. Johnson, A. David; Bokaie, Michael; Martynov, Valery, Single crystal shape memory alloy devices and methods.
  40. Johnson, Alfred David; Gilbertson, Roger Graham; Martynov, Valery, Sprinkler valve with active actuation.
  41. Robert O. Pichulo ; Gregory Keller Rasmussen ; Mark Ray McClanahan, Sputtering alloy films using a crescent-shaped aperture.
  42. Robert O. Pichulo ; Gregory Keller Rasmussen, Sputtering alloy films using a sintered metal composite target.
  43. Abrams,Robert M.; Fariabi,Sepehr, Superelastic guiding member.
  44. Ryman, Paul, Systems and methods for single stack shadowing.
  45. Johnson, A. David, Tear-resistant thin film methods of fabrication.
  46. Roth Noah M., Thin film stent.
  47. Roth, Noah M., Thin film stent.
  48. Roth,Noah M., Thin film stent.
  49. Roth,Noah M., Thin film stent.
  50. Watters, David G.; Huestis, David L.; Bahr, Alfred J., Wireless event-recording device with identification codes.
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