Fractographical Investigation on Mechanism of Interior-Induced Fatigue Fracture of SUP7 Steel for Hot Formed Springs
Author:
Affiliation:
1. Grad. Sch. of Sci. and Eng., Ritsumeikan Univ.
2. Tech. Center, Chuo Spring Co. Ltd.
3. Grad. Sch. of Eng., Kobe Univ.
4. Dept. Mech. Eng., Ritsumeikan Univ.
Publisher
Society of Materials Science, Japan
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Link
https://www.jstage.jst.go.jp/article/jsms/64/8/64_613/_pdf
Reference16 articles.
1. 1) C. Masuda, S. Nishijima and Y. Tanaka, “Relationship between fatigue strength and hardness for high strength steels”, Transactions of the Japan Society of Mechanical Engineers (series A), Vol.52, No.476, pp.847-852 (1986).
2. 2) T. Sakai, M. Takeda, K. Shiozawa, Y. Ochi, M. Nakajima, T. Nakamura and N. Oguma, “Experimental recommendation of characteristic S-N property for high carbon chromium bearing steel in wide life region in rotating bending”, Journal of the Society of Materials Science, Japan, Vol.49, No.7, pp.779-785 (2000).
3. 3) T. Sakai, Y. Sato and N. Oguma, “Characteristic S-N property of high carbon chromium bearing steel under axial loading in long life fatigue”, Transactions of the Japan Society of Mechanical Engineers (series A), Vol.67, No.664, pp.1980-1987 (2001).
4. 4) T. Sakai, M. Takeda, N. Tanaka, M. Kanemitsu, N. Oguma and K. Shiozawa, “Characteristic S-N property of high carbon chromium bearing steel in ultra-wide life region under rotating bending”, Materials Science Research International, STP1, pp.41-46 (2001).
5. 5) T. Sakai, “Review and prospects for current studies on very high cycle fatigue of metallic materials for machine structural use”, Journal of Solid Mechanics and Materials Engineering, Vol.3, No.3, pp.425-439 (2009).
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