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Effect of grain size on tensile properties of fine-grained metastable p titanium alloys fabricated by stress-induced martensite and its reverse transformations

机译:晶粒尺寸对应力诱发马氏体制备的细晶粒亚稳态p钛合金拉伸性能的影响及其反向转变

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摘要

Fine-grained Ti-16V-3.5Al-3Sn alloys were fabricated through the stress-induced martensite and its reverse transformations. All tensile curves of the alloys showed double yielding, high strain hardening and low trigger stress for martensitic transformation. As the grain size increased, the trigger stress decreased and then increased again, while the dimples on the fractured surface became large and non-uniform. The three-stage strain hardening and high strain-hardening rate were closely associated with the stress-induced P to a" martensitic transformation and dislocation hardening.
机译:通过应力诱导的马氏体及其反向转变,制备了细晶粒的Ti-16V-3.5Al-3Sn合金。合金的所有拉伸曲线均显示出双屈服,高应变硬化和较低的马氏体相变触发应力。随着晶粒尺寸的增大,触发应力减小,然后再次增大,而在断裂表面上的凹坑变大且不均匀。三阶段应变硬化和高应变硬化率与应力诱发的P向“马氏体转变和位错硬化”密切相关。

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