Effect of Twin Schmid Factor on the Tension Twinning Activities in a Highly Textured Mg-3Al-1Zn

Dexin Zhao, Jiaqi Dong, K. Xie
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Abstract

We investigated the effect of twin Schmid factor on the tension twinning of individual grains in deformed textured Mg-3Al-1Zn samples. The samples were deformed to ~3% strain (normal-direction compression and tension, rolling-direction compression and tension, and 45 o compression). Statistical analyses on the electron backscatter diffraction results revealed tension twinning generally obeys the Schmid law for individual grains, regardless of whether the global stress state favors tension twinning or not. The strong dependence of tension twinning on Schmid factor is in contrast to the reported weak correlation of dislocations and Schmid factor in the same material system. Such observations are anticipated to advance the understanding of the Schmid factor effect on the deformation behavior of polycrystalline Mg alloys.
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孪晶施密德因子对高织构Mg-3Al-1Zn拉伸孪晶活性的影响
研究了孪晶施密德因子对变形织构Mg-3Al-1Zn试样中单个晶粒拉伸孪晶的影响。试样变形至~3%应变(法向压缩和拉伸,滚动方向压缩和拉伸,45度压缩)。对电子背散射衍射结果的统计分析表明,无论整体应力状态是否有利于张力孪晶,单个晶粒的张力孪晶总体上遵循施密德定律。张力孪晶对施密德因子的依赖性很强,而在同一材料体系中,位错与施密德因子的相关性较弱。这些观察结果有望促进对施密德因子对多晶镁合金变形行为影响的理解。
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