共 61 条
[1]
Kim H.Y., Fu J., Tobe H., Kim J.I., Miyazaki S., Crystal structure, transformation strain, and superelastic property of Ti–Nb–Zr and Ti–Nb–Ta alloys, Shape Mem Superelasticity, 1, pp. 107-116, (2015)
[2]
Kim H.Y., Hashimoto S., Kim J.I., Inamura T., Hosoda H., Miyazaki S., Effect of Ta addition on shape memory behavior of Ti–22Nb alloy, Mater Sci Eng A, 417, pp. 120-128, (2006)
[3]
Kim H.Y., Ikehara Y., Kim J.I., Hosoda H., Miyazaki S., Martensitic transformation, shape memory effect and superelasticity of Ti–Nb binary alloys, Acta Mater, 54, pp. 2419-2429, (2006)
[4]
Kim H.Y., Kanaya T., Fukushima T., Bueconsejo P.J.S., Miyazaki S., Stability of Ti-Ta base high temperature shape memory alloys, Materials Science Forum: Trans Tech Publ, Pfaffikon, pp. 1921-1924, (2012)
[5]
Kim J.I., Kim H.Y., Hosoda H., Miyazaki S., Shape memory behavior of Ti-22Nb-(0.5-2.0) O (at%) biomedical alloys, Mater Trans, 46, pp. 852-857, (2005)
[6]
Miyazaki S., Kim H.Y., Hosoda H., Development and characterization of Ni-free Ti-base shape memory and superelastic alloys, Mater Sci Eng A, 438, pp. 18-24, (2006)
[7]
Hao Y.L., Li S.J., Sun S.Y., Zheng C.Y., Hu Q.M., Yang R., Super-elastic titanium alloy with unstable plastic deformation, Appl Phys Lett, 87, (2005)
[8]
Ozaki T., Matsumoto H., Watanabe S., Hanada S., Beta Ti alloys with low young’s modulus, Mater Trans, 45, pp. 2776-2779, (2004)
[9]
Kim J.I., Kim H.Y., Inamura T., Hosoda H., Miyazaki S., Shape memory characteristics of Ti–22Nb–(2–8) Zr (at.%) biomedical alloys, Mater Sci Eng A, 403, pp. 334-339, (2005)
[10]
Ojha A., Sehitoglu H., Slip resistance of Ti–based high–temperature shape memory alloys, Shap Mem Superelasticity, pp. 1-12, (2016)