晶体孪晶
材料科学
方向错误
晶界强化
极限抗拉强度
晶界
微观结构
加工硬化
延展性(地球科学)
冶金
复合材料
粒度
应变硬化指数
蠕动
作者
Zhiwei Huang,Donghui Wen,Xueyan Hou,Yusheng Li,Biao Wang,Anding Wang
标识
DOI:10.1016/j.msea.2022.143461
摘要
The influence of grain size and temperature mediated twinning ability on mechanical properties of pure Ti is investigated in this study. A remarkable work-hardening ability was found in the uniaxial tensile stress-strain curve obtained at liquid nitrogen temperature, leading to a higher ultimate tensile stress and improved total ductility compared with the room temperature values. Evidence of microstructure and misorientation evolvement during tensile testing was provided to prove that twinning was prevalent in larger grains at lower temperature. The generation of twinning can provide additional boundary strengthening and work hardening capability by adjusting the parent grain orientation. The transition from traditional grain-boundary strengthening to dynamic twinning strengthening contributes to the outstanding strength-ductility combination, which follows a modified Hall-Petch relationship showing a strong synergistic effect of grain boundary and twinning.
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