材料科学
马氏体
开裂
疲劳试验
位错
疲劳开裂
微观结构
裂缝闭合
疲劳极限
巴黎法
结构工程
冶金
断裂力学
复合材料
工程类
作者
Ming‐Liang Zhu,Gang Zhu,Fu‐Zhen Xuan
摘要
Abstract It is known that fine granular area morphology is often formed around interior micro‐defect in the case of very high cycle fatigue failure of high strength steel. The mechanism of “fragmentation of martensitic laths and formation of dislocation cells” (Zhu's model), which revealed a microstructure‐dependent crack initiation and early growth for micro‐defect induced internal fatigue cracking, was discussed in several lathy martensitic or similar steels, verified under environmental fatigue, and applicable to white etching crack in rotating contact fatigue. A machine learning‐ Z parameter integrated approach was developed for fatigue life, which is promising for design against fatigue of engineering structures for long life.
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