Mechanical Properties of Ti–50(Pt,Ir) High-Temperature Shape Memory Alloys
Author:
Affiliation:
1. National Institute for Material Science
2. Materials and Process Design Division of Materials Science and Engineering, Hokkaido University
3. Precision & Intelligence Laboratory (P&I Lab.), Tokyo Institute of Technology
Publisher
Japan Institute of Metals
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Link
https://www.jstage.jst.go.jp/article/matertrans/47/3/47_3_650/_pdf
Reference22 articles.
1. 1) K. Enami and S. Nenno: Metall. Trans. 2 (1971) 1487–1490.
2. 2) H. Hosoda, M. Tsuji, M. Mimura, Y. Takahashi, K. Wakashima and Y. Yamabe-Mitarai: MRS 753 (2003) BB5-51-1–BB5-51-6.
3. 3) Y. Takahashi, T. Inamura, J. Sakurai, H. Hosoda, K. Wakashima and S. Miyazaki: Trans. MRS-J. 29 (2004) 3005–3008.
4. 4) T. Inamura, Y. Takahashi, H. Hosoda, K. Wakashima, T. Nagase, T. Nakano, Y. Umakoshi and S. Miyazaki: MRS 842 (2004) 347–352.
5. 5) K. Otsuka, K. Oda, Y. Ueno, M. Piao, T. Ueki and H. Horikawa: Scr. Metal. 29 (1993) 1355–1359.
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