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Effect of Pulsed Current on the Tensile Deformation Behavior and Microstructure Evolution of AZ80 Magnesium Alloy

机译:脉冲电流对AZ80镁合金拉伸变形行为及微观结构演化的影响

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摘要

In this work, the tensile deformation behavior of an as-extruded AZ80 magnesium alloy under pulsed current (PC) was investigated based on microstructure observations. We found that compared with the tensile tests at room temperature (RT) and given temperature (GT), the flow stress is reduced due to both thermal and athermal effects of pulsed current. A quasi-in-situ electron backscatter diffraction (EBSD) analysis reveals that at the same strain, the geometrically necessary dislocation (GND) density of the RT sample is the highest, followed by the GT sample and the PC sample. This proves that the athermal effect can promote the annihilation of dislocations and slow down dislocation pileup, which reduces the flow stress. In addition, the twinning behavior under different deformation conditions was studied; the twins are {10−12} tension twins, which are activated with the assistance of local stress. We found that the twin fraction in the PC sample is lower than that in the RT and GT samples, due to the least accumulation of GNDs at grain boundaries, which decreases the nucleation of {10−12} tension twins.
机译:在这项工作中,基于微观结构观察研究了脉冲电流(PC)下的挤出式AZ80镁合金的拉伸变形行为。我们发现,与室温(RT)的拉伸试验相比,由于脉冲电流的热量和动脉效应,流量应力降低。准原电子背散射衍射(EBSD)分析显示,在相同的菌株处,RT样品的几何必要脱位(GND)密度最高,其次是GT样品和PC样品。这证明了滴度效应可以促进脱位和缓慢脱位堆积,这降低了流量应力。此外,研究了不同变形条件下的孪生行为;双胞胎是{10-12}张力双胞胎,在局部应力的帮助下被激活。由于GNDS在晶界的最小累积,我们发现PC样品中的双级分在RT和GT样品中低于RT和GT样品,这降低了{10-12}张力双胞胎的核心。

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