Improvement of experimental device for high cycle fatigue tests of copper alloy strips and characterizing fatigue properties
Author:
Affiliation:
1. Graduate School of Science and Engineering, Keio University
2. Department of Mechanical Engineering, Keio University
3. Iriso Electronics CO., LTD
Publisher
Japan Society of Mechanical Engineers
Link
https://www.jstage.jst.go.jp/article/transjsme/87/900/87_21-00105/_pdf
Reference16 articles.
1. Aoyama, S. and Urao, R., Effect of grain size and Sn consentration on bending fatigue life of Su-Sn alloy, The Journal of the Japan Institute of Metals and Materials, Vol.74, No.1 (2010), pp.49-54 (in Japanese).
2. Castillo, E. and Fernandez-Canteli, A., A unified statistical methodology for modeling fatigue damage, Springer Science & Business Media (2009), pp.193-201.
3. Congleton, J., Parkins, R. N. and Yu, J., Intergranular and transgranular cracking of Cu–30Zn brass during fatigue loading, Materials Science and Technology, Vol.1 (1985), pp.1046-1052.
4. Isida, M., Miura, S. and Kumagai, J., Effect on mechanical property by the cold-rolling processing of the Cu-Cr Zr based alloy, Journal of Japan Institute of Copper, Vol.46, No.1 (2007), pp.148-152 (in Japanese).
5. Jahn, M. T. and Saavedra, A. R., Fatigue and tensile properties of a newly developed tin-copper alloy, Journal of materials science letters, Vol.11 (1992), pp.1596-1598.
Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
1. Fatigue Strength Evaluation of Cu–Ni–Si Alloy Strips;Journal of Engineering Materials and Technology;2023-07-04
2. Fatigue Crack Propagation Properties in Thin Cu–Sn–P Copper Alloy Strips;Journal of the Society of Materials Science, Japan;2022-12-15
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