Effects of Defects and Shot Peening on Fatigue Properties of Additively Manufactured CoCrFeNiTiMo-Based High-Entropy Alloys

材料科学 喷丸 高熵合金 喷丸 冶金 疲劳试验 复合材料 合金 残余应力
作者
Miu Hayashi,Naoki Kurita,Tadatoshi Watanabe,Kenichi Yamamoto,Yuki Ogawa,Hiroyuki AKEBONO,Atsushi Sugeta
出处
期刊:Journal of Materials Engineering and Performance [Springer Science+Business Media]
标识
DOI:10.1007/s11665-024-10371-3
摘要

Abstract Recently, the automotive industry has increasingly focused on additive manufacturing as a new technology for reducing the weights of automobiles. In this study, fatigue tests were conducted on additively manufactured high-entropy alloys with different defect characteristics to clarify the relationships between their defect characteristics and fatigue strengths and to elucidate their fatigue fracture mechanisms. In addition, the effect of shot peening as an effective fatigue strength improvement method for an additively manufactured component was investigated. As a result, when defects formed by additive manufacturing were smaller than crystal grains, the numbers and sizes of defects affect fatigue crack growth behavior and barely affect fatigue life. Shot peening reduces the crack growth rate and is effective in extending the fatigue life. However, improvement in the fatigue limit is not achieved because the crack initiation site is a facet. From the above results, for defects smaller than the grain size, shot peening is a more effective method for improving fatigue life than reducing the numbers and sizes of defects.

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