The Effects of Test Stress and Microstructure for Cold Dwell Fatigue Properties of Ti-6Al-4V and Its Life Assessment.

Author:

OTA Yutaro1,KUBUSHIRO Keiji2,YAMAZAKI Yasuhiro3

Affiliation:

1. Technology Platform Center, IHI Corporation

2. Asia Solution Center, IHI ASIA PACIFIC(Thailand) Co., Ltd.

3. Graduate school of Science and Engineering, Chiba University

Publisher

Society of Materials Science, Japan

Subject

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

Reference24 articles.

1. 1) R. Viswanathan (F. Masuyama and K. Maruyama, Transrated) “Damage mechanics and life assessment of high-temperature components”, The Nikkan Kogyo Shimbun, Ltd., pp.181-183 (1993) (Original work published 1989).

2. 2) I. Nonaka, M. Kitagawa and S. Torihata, "Feasibility study on ductility exhaustion approach for creep-fatigue damage assessment of FBR 316 stainless steel using published data", Journal of the Society of Materials Science, Japan, No.496, pp. 41-45 (1995).

3. 3) T. Ogata “Influence of long-term strain hold on creep-fatigue life of mod. 9Cr-1Mo steel”, Journal of the Society of Materials Science, Japan, Vol.46, No.1, pp. 25-31 (1997)

4. 4) Y. Takahashi and M. Yaguchi, "Modification of ductility exhaustion-type creep-fatigue life prediction method based on re-definition of creep damage and application to high-chromium steels", Journal of the Society of Materials Science, Japan, Vol.54, No.2, pp.168-173 (2005).

5. 5) M. Yaguchi and Y. Asada, "Life prediction model based on the creep-fatigue damage mechanism", Japan Society of Mechanical Engineering, Vol.62, No.598, pp.1321-1326 (1996).

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