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Twinning-Detwinning Behavior during Cyclic Deformation of Magnesium Alloy

机译:镁合金循环变形过程中的孪生-不孪生行为

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In situ neutron diffraction has been used to examine the deformation mechanisms of a precipitation-hardened and extruded Mg-8.5wt.%Al alloy subjected to (i) compression followed by reverse tension (texture T1) and (ii) tension followed by reverse compression (texture T2). Two starting textures are used: (1) as-extruded texture, T1, in which the basal pole of most grains is normal to the extrusion axis and a small portion of grains are oriented with the basal pole parallel to the extrusion axis; (2) a reoriented texture, T2, in which the basal pole of most grains is parallel to the extrusion axis. For texture T1, the onset of extension twinning corresponds well with the macroscopic elastic-plastic transition during the initial compression stage. The non-linear macroscopic stress/strain behavior during unloading after compression is more significant than during unloading after tension. For texture T2, little detwinning occurs after the initial tension stage, but almost all of the twinned volumes are detwinned during loading in reverse compression.
机译:原位中子衍射已被用于检验沉淀硬化并挤压的Mg-8.5wt。%Al合金在(i)压缩然后反向拉伸(纹理T1)和(ii)张力随后反向压缩的变形机理(纹理T2)。使用两种起始纹理:(1)挤压纹理T1,其中大多数晶粒的基极垂直于挤压轴,而一小部分晶粒的基极与挤压轴平行。 (2)重新定向的纹理T2,其中大多数晶粒的基极平行于挤压轴。对于纹理T1,延伸孪生的开始与初始压缩阶段的宏观弹塑性过渡很好地对应。压缩后卸载期间的非线性宏观应力/应变行为比拉伸后卸载期间的非线性宏观应力/应变行为更为重要。对于纹理T2,在初始拉伸阶段之后几乎不发生缠绕,但是在反向压缩加载期间几乎所有孪生体积都被缠绕。

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