Development of Low Rigidity β-type Titanium Alloy for Biomedical Applications

Author:

Niinomi Mitsuo1,Hattori Tomokazu2,Morikawa Keizo3,Kasuga Toshihiro4,Suzuki Akihiro5,Fukui Hisao6,Niwa Sigeo3

Affiliation:

1. Department of Production Systems Engineering, Toyohashi University of Technology

2. Department of Materials Science and Engineering,Faculty of Science and Technology, Meijo University

3. Department of Orthopaedic Surgery, Aichi Medical University

4. Department of Materials Scioence, Nagoya Institute of Technology

5. R&D Laboratory, Daido Steel Co., Ltd.

6. Department of Dental Materials Science, School of Dentistry, Aichi-Gakuin University

Publisher

Japan Institute of Metals

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference11 articles.

1. 1) ASTM designation F2066-01: Standard specification for wrought titanium-15 molybdenum alloy for surgical implant applications, (ASTM, Philadelphia. PA: U.S.A., 2001) pp. 1605–1608.

2. 2) ASTM designation draft #3. Standard specification for wrought taitanium–35Niobium–7zirconium–5tantalum alloy for surgical implant applications (UNS R58350): (ASTM, Philadephia. PA, U.S.A).

3. 3) ASTM designation draft #6. Standard specification for wrought titanium–3aluminun–2.5vanadium alloy seamless tubing for surgical implant applications (UNS R56320): (ASTM, Philadelphia, PA, U.S.A).

4. 4) Y. Okazaki, T. Tateishi and Y. Ito: Mater. Trans., JIM 38 (1997) 78–84.

5. 5) D. Kuroda, M. Niinomi, M. Morinaga, Y. Kato and T. Yashiro: Mater. Sci. Eng. A A243 (1998) 244–249.

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