Failure mode for SS400 notched specimen under repeated impact loading
Author:
Affiliation:
1. Center for Technology Innovation-Mechanical Engineering, Hitachi, Ltd.
2. Driveability & Environmental Performance Development Dept. Powertrain Development Div. Mazda Motor Co.
3. Department of Mechanical Engineering, Osaka Prefecture University.
Publisher
Japan Society of Mechanical Engineers
Link
https://www.jstage.jst.go.jp/article/transjsme/85/873/85_18-00413/_pdf
Reference15 articles.
1. Aoki, S., Dynamic fracture mechanics and dynamic fracture toughness, Journal of the Society of Materials Science, Japan, Vol.33, No.365 (1984), pp. 123-129 (in Japanese).
2. Chatani, A., Kawada, T., Nakazawa, H. and Nakahara, I., The deformation and strength of mild steel subjected to repeated impact tensile stresses, Journal of the Society of Materials Science, Japan, Vol.17, No.176 (1967), pp.16-22 (in Japanese).
3. Chatani, A., Nakazawa, H. and Nakahara, I., Repeated impact tensile strengths of engineering metals, Journal of the Japan Society of Mechanical Engineers, Vol.73, No.622 (1970), pp.1508-1516 (in Japanese).
4. Hashimoto, H., Hashimoto, K., Mimura, K., Riku, I. and Umeda, T., Transition of failure mode when impact load was repeatedly applied to SS400 smooth specimen, Journal of the Society of Materials Science, Japan, Vo.67, No.11 (2018), pp.993-999 (in Japanese).
5. Horimoto, N., Matsumoto, H., Makino, T., Murai, N., Oda, K., Arimi, Y., Fujikawa, S. and Nishino, T., Effect of core hardness and case depth on low-cycle-impact-fatigue property in carburized steel, Journal of the Society of Materials Science Japan, Vol.52, No.11 (2003), pp.1318-1324 (in Japanese).
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