首页> 外文会议>International Conference on Proceeding amp; Manufacturing of Advanced Materials; 20060704-08; Vancouver(CA) >Effect of Initial Grain Size and Strain Path on Grain Refinement in Magnesium Alloy AZ31
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Effect of Initial Grain Size and Strain Path on Grain Refinement in Magnesium Alloy AZ31

机译:初始晶粒尺寸和应变路径对AZ31镁合金晶粒细化的影响

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Grain refinement taking place in a magnesium alloy AZ31 was studied in a single- and multi-directional compression at a temperature of 573K. The structural changes observed by SEM/EBSD analysis can be characterized by the evolution of many mutually crossing kink bands at low strains, continuous increase in their number and misorientation angle in moderate strain and finally full formation of a fine-grained structure in high strain. The characteristics of new grain evolution process are sensitively affected by initial grain size (Do) and strain path. New grains are developed faster with decrease in D_0. Multi-directional compression accelerates the evolution of fine grains and the improvement of plastic workability. The mechanism of new grain formation is discussed in detail.
机译:研究了在573K温度下单向和多向压缩下镁合金AZ31中晶粒细化的过程。通过SEM / EBSD分析观察到的结构变化的特征在于,在低应变下会形成许多相互交叉的扭结带,在中等应变下其数目和取向角会不断增加,最后在高应变下会完全形成细晶粒结构。初始晶粒尺寸(Do)和应变路径对新晶粒演化过程的特性具有敏感的影响。随着D_0的减少,新颗粒的生长更快。多向压缩可加速细晶粒的发展并改善塑性加工性。详细讨论了新晶粒形成的机理。

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