Cyclic plasticity and damage mechanisms of Ti-6Al-4V processed by electron beam melting

INTERNATIONAL JOURNAL OF FATIGUE(2022)

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摘要
Cyclic deformation and damage mechanisms in electron-beam-melted Ti-6Al-4V are investigated. As-built samples exhibit a graded microstructure over the height of 120 mm, with samples from the top having larger alpha-laths and higher plastic strain. After HIPing, the alpha-lath width is greater, with reduced grain misorientation, and lower microstructural and property gradients. In both conditions, the observed cyclic softening is dominated by a monotonic reduction in the friction stress and an increase in grain misorientation, suggesting the lath structure progressively fragments into smaller grains. As-built samples show typically lower fatigue life due to crack initiation from gas pores and lack-of-fusion defects.
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关键词
Additive manufacturing,Cyclic deformation,Electron beam melting,Titanium alloys,Strain controlled fatigue
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