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Investigation of the Texture and Dislocation Behavior of AZ31 Magnesium Alloy Under Different Strain Rate Conditions

机译:不同应变率条件下AZ31镁合金质地和位错行为的研究

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This study is concerned with the influence of strain rate on the plastic deformation behavior and microstructure variables of AZ31 magnesium alloy sheet. The tensile properties were measured at room temperature at a strain rate of 0.001 and 100 s~(-1) using a universal tensile testing machine and servo-hydraulic high-speed tensile test machine respectively. The microstructure was observed at strains of 5, 10, 15%, produced by tensile elongation. As the strain rate increased, the flow stress and the yield strength increased. The EBSD analysis showed that a texture of the (0001) basal plane was formed parallel to the rolled plate and texture was formed at random in the (1010) non-basal plane. Double twinning was not observed and extension and contraction twinning were observed at all strain rate levels. The fraction of twin boundaries were increased as strain rate increased. TEM analysis determined that the dislocation density of the specimen strained by 1% at a strain rate of 100 s~(-1) was higher than that of a strain rate of 0.001 s~(-1). In addition, the dislocation was found at all strain rate levels. These results show that the deference in elongation of the AZ31 Mg alloy is dependent on strain rate.
机译:该研究涉及应变率对AZ31镁合金板塑性变形行为和微观结构变量的影响。使用通用拉伸试验机和伺服液压高速拉伸试验机以0.001和100 S〜(-1)的应变速率在室温下测量拉伸性能。通过拉伸伸长率产生的5,10,15%的菌株观察微观结构。随着应变速率增加,流量应力和屈服强度增加。 EBSD分析表明(0001)基体的纹理平行于轧制板形成,并且在(1010)非基本平面中随机形成纹理。未观察到双孪晶,并且在所有应变率水平下观察到延伸和收缩孪晶。随着应变速率的增加,双界限的分数增加。 TEM分析确定,在100s〜(-1)的应变率下应变为0.001 s〜(-1)的应变速率的标本的位错密度高于0.001 s〜(-1)。此外,在所有应变率水平上发现位错。这些结果表明,AZ31 mg合金伸长率偏振依赖于应变率。

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