Abstract
Recently, the Ti-Zr-Nb alloys have been developed as Ni-free shape memory and superelastic alloys. In this study, the effect of Nb and nitrogen (N) contents on martensitic transformation behavior, shape memory effect and superelasticity in Ti-18Zr-(12-16)Nb-(0-1.0)N (at%) alloys were investigated using tensile tests, optical microscopy and X-ray diffraction. Shape memory effect was observed in Ti-18Zr-(12-13)Nb and Ti-18Zr-12Nb-0.5N alloys at room temperature. The superelastic behavior appeared by the increase of Nb or N content. The Ti-18Zr-(14-15)Nb, Ti-18Zr-(13-14)Nb-0.5N and Ti-18Zr-(12-14)Nb-1. 0N alloys exhibited the superelasticity at room temperature. The martensitic transformation start temperature (M s) decreased by 75 K with 1 at% increase of N content for Ti-18Zr-13Nb alloy. The critical stress for slip deformation and the stress for inducing the martensitic transformation increased with increasing N content. The superelastic recovery strain was also increased by adding N. The maximum recovery strain of 5.0% was obtained in the Ti-18Zr-14Nb-0.5N alloy. © 2008 The Japan Institute of Metals.
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Tahara, M., Kim, H. Y., Inamura, T., Hosoda, H., & Miyazaki, S. (2008). Effect of nitrogen addition on superelasticity of Ti-Zr-Nb alloys. Nippon Kinzoku Gakkaishi/Journal of the Japan Institute of Metals, 72(12), 955–959. https://doi.org/10.2320/jinstmet.72.955
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