Martensitic transformation, shape memory effect and superelasticity of Ti–Nb binary alloys HY Kim, Y Ikehara, JI Kim, H Hosoda, S Miyazaki Acta materialia 54 (9), 2419-2429, 2006 | 1082 | 2006 |
Effect of cyclic deformation on the pseudoelasticity characteristics of Ti-Ni alloys S Miyazaki, T Imai, Y Igo, K Otsuka Metallurgical transactions A 17, 115-120, 1986 | 946 | 1986 |
Shape-memory materials and hybrid composites for smart systems: Part I Shape-memory materials ZG Wei, R Sandstroröm, S Miyazaki Journal of materials science 33, 3743-3762, 1998 | 824 | 1998 |
Development of shape memory alloys S Miyazaki, K Otsuka Isij International 29 (5), 353-377, 1989 | 719 | 1989 |
Deformation and transition behavior associated with theR-phase in Ti-Ni alloys S Miyazaki, K Otsuka Metallurgical Transactions A 17, 53-63, 1986 | 685 | 1986 |
Transformation pseudoelasticity and deformation behavior in a Ti-50.6 at% Ni alloy S Miyazaki, K Otsuka, Y Suzuki Scripta Metallurgica 15 (3), 287-292, 1981 | 668 | 1981 |
Effect of thermal cycling on the transformation temperatures of Ti Ni alloys S Miyazaki, Y Igo, K Otsuka Acta metallurgica 34 (10), 2045-2051, 1986 | 612 | 1986 |
Crystal structure of the martensite in Ti-49.2 at.% Ni alloy analyzed by the single crystal X-ray diffraction method Y Kudoh, M Tokonami, S Miyazaki, K Otsuka Acta Metallurgica 33 (11), 2049-2056, 1985 | 578 | 1985 |
Characteristics of deformation and transformation pseudoelasticity in Ti-Ni alloys S Miyazaki, Y Ohmi, K Otsuka, Y Suzuki Le Journal de Physique Colloques 43 (C4), C4-255-C4-260, 1982 | 507 | 1982 |
Martensitic transformation and shape memory behavior in sputter-deposited TiNi-base thin films S Miyazaki, A Ishida Materials Science and Engineering: A 273, 106-133, 1999 | 497 | 1999 |
Development and characterization of Ni-free Ti-base shape memory and superelastic alloys S Miyazaki, HY Kim, H Hosoda Materials Science and Engineering: A 438, 18-24, 2006 | 474 | 2006 |
Optimisation of processing and properties of medical grade Nitinol wire AR Pelton, J Dicello, S Miyazaki Minimally Invasive Therapy & Allied Technologies 9 (2), 107-118, 2000 | 469 | 2000 |
Shape memory characteristics of Ti–22Nb–(2–8) Zr (at.%) biomedical alloys JI Kim, HY Kim, T Inamura, H Hosoda, S Miyazaki Materials Science and Engineering: A 403 (1-2), 334-339, 2005 | 435 | 2005 |
Mechanical properties and shape memory behavior of Ti-Nb alloys HY Kim, S Hashimoto, JI Kim, H Hosoda, S Miyazaki materials Transactions 45 (7), 2443-2448, 2004 | 429 | 2004 |
Hard variants of stable marriage DF Manlove, RW Irving, K Iwama, S Miyazaki, Y Morita Theoretical Computer Science 276 (1-2), 261-279, 2002 | 412 | 2002 |
The shape memory mechanism associated with the martensitic transformation in Ti Ni alloys—I. Self-accommodation S Miyazaki, K Otsuka, CM Wayman Acta Metallurgica 37 (7), 1873-1884, 1989 | 364 | 1989 |
Effect of specimen thickness on mechanical properties of polycrystalline aggregates with various grain sizes S Miyazaki, K Shibata, H Fujita Acta Metallurgica 27 (5), 855-862, 1979 | 351 | 1979 |
Shape memory alloys for biomedical applications T Yoneyama, S Miyazaki Elsevier, 2008 | 337 | 2008 |
Crystallography of martensitic transformation in Ti Ni single crystals O Matsumoto, S Miyazaki, K Otsuka, H Tamura Acta Metallurgica 35 (8), 2137-2144, 1987 | 334 | 1987 |
Texture and shape memory behavior of Ti–22Nb–6Ta alloy HY Kim, T Sasaki, K Okutsu, JI Kim, T Inamura, H Hosoda, S Miyazaki Acta materialia 54 (2), 423-433, 2006 | 319 | 2006 |