研究论文
Microstructure stability and damage mechanisms in an α/β Ti-6Al-4V-0.55Fe alloy during low cycle dwell-fatigue at room temperature
Shan Shi, Qinghua Deng, Hang Zhang, Liang Feng, Xiangjun Xu, Jie Ding, Hui Chang, Lian Zhou
Nanjing Tech University Yangtze Normal University
来源International Journal of Fatigue
年份2021
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材料 / 化学Titanium Alloys Microstructure and Properties
Magnesium Alloys: Properties and Applications · Intermetallics and Advanced Alloy Properties
参考文献 38
On deformation twins and twin-related lamellae in TiAl
被引 36Zhe Jin, G. T. Gray · Journal of Materials Science · 1998
Effect of α-phase morphology on low-cycle fatigue behavior of TC21 alloy
被引 97Changsheng Tan, Xiangli Li, Qiaoyan Sun · International Journal of Fatigue · 2015
Propagation of microcracks at stress amplitudes below the conventional fatigue limit in Ti–6Al–4V
被引 46Joy A. Hines, G. Lütjering · Fatigue & Fracture of Engineering Materials & Structures · 1999
此处列出前 3 条
引用本文 16
Enhanced low cycle fatigue properties of selective laser melting Ti–6Al–4V with fine-tuned composition and optimized microstructure
被引 33Yuqi He, Fengying Zhang, Yuhong Dai · Journal of Material Science and Technology · 2023
Workflow for fatigue life prediction of additive manufactured complex designs from powder bed fusion of Ti–6Al–4V
被引 11Prateek Kishore, Tanul Singh, Ravi Aher · International Journal of Fatigue · 2023
Cyclic deformation response and strain-induced martensitic transformation of β single phase Ti-35421 alloy
被引 8Yangyang Sun, Kai Chen, Igor Alexandrov · International Journal of Fatigue · 2022
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