材料科学
晶体孪晶
成核
成形性
微观结构
临界切应力
变形机理
打滑(空气动力学)
剪切(地质)
复合材料
冶金
热力学
物理
粘度
剪切速率
作者
Umer Masood Chaudry,Hafiz Muhammad Rehan Tariq,Muhammad Zubair,Nooruddin Ansari,Tea‐Sung Jun
标识
DOI:10.1016/j.jma.2023.09.023
摘要
Deformation twinning is profusely activated in the Mg alloys due to lower critical resolved shear stress (CRSS) compared to the non-basal slip systems (prismatic 〈a〉 and pyramidal ) and plays a significant role in texture reorientation, grain refinement and enhancement of mechanical performance. Twinning is a sequential process comprising twin nucleation, twin propagation and twin growth, hence several intrinsic and extrinsic parameters that facilitate or suppress the process have been critically reviewed. The dependence of twinning on the grain size, deformation temperature, favorable grain orientation and shear strain have been thoroughly discussed in the context of published literature and an attempt has been made to provide a benchmark conclusive finding based on the majority of works. Furthermore, the subsequent effect of twinning on the mechanical performance of Mg alloys, including ductility, formability and tension-compression asymmetry has been discussed in detail. Lastly, the stability of twins, including stress and thermal stability, is summarized and critical issues related to pertinent bottlenecks have been addressed.
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