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Effects of crystallographic orientation and lamellar configuration on fatigue crack propagation in single-colony structures of Ti–6Al–4V alloy: Alternating shear crack growth vs. damage accumulation crack propagation
Shohei Ueki, Yoji Mine, Yu‐Lung Chiu, Paul H. Bowen, Kazuki Takashima
Kyushu University Kumamoto University University of Birmingham
来源Materials Science and Engineering A
年份2023
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学术脉络
学科主题
材料 / 化学Titanium Alloys Microstructure and Properties
Microstructure and mechanical properties · High-Velocity Impact and Material Behavior
参考文献 58
Mechanics of Crack Tip Deformation and Extension by Fatigue
被引 826JAMES R. RICE · 1967
The Influence of Metallurgical Structure on the Mechanisms of Fatigue Crack Propagation
被引 410Campbell Laird · 1967
THEORY OF BRITTLE FRACTURE IN STEEL AND SIMILAR METALS
被引 277Alan Howard Cottrell · Trans. Met. Soc. AIME · 1958
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引用本文 24
Slip heterogeneity in a colony-structured titanium alloy: Planar versus wavy slip traces
被引 33Zhiying Liu, Ganlin Chen, S.S. Dash · International Journal of Plasticity · 2025
Effect of grain structure on fatigue crack propagation behavior of 2024 aluminum alloy under different stress ratios
被引 32Hongtao Chen, Shuyao Liu, Pai Wang · Materials & Design · 2024
Effect of Interstitial Oxygen on the Microstructure and Mechanical Properties of Titanium Alloys: A Review
被引 27Yaojia Ren, Jiajun Xu, Yingkang Wei · Crystals · 2025
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