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The effect of twinning on strain rate sensitivity during the compression of extruded magnesium alloy AZ31

机译:孪晶对挤压镁合金AZ31压缩过程中应变率敏感性的影响

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Samples of extruded magnesium alloy AZ31 (nominally 3 wt% Al, 1 wt% Zn, 0.3 wt% Mn, with the balance magnesium) were tested in uniaxial compression at temperatures from room temperature to 200℃. Monotonic and strain rate jump tests were conducted, and strain rate sensitivity, and activation volume were determined. At the lower temperatures tested, strain rate sensitivity was found to increase with strain to a limiting value, whereas at 200℃ strain rate sensitivity initially followed a similar trend, but did not reach a limit within the bounds of the test. The effect of temperature on strain rate sensitivity was minor up to 150℃ Activation volume decreased with stress by roughly an order of magnitude over the course of the tests. An analytical model was modified to incorporate strain rate sensitivity, and it is shown that the evolution of material by twinning into an orientation favourable for slip is principally responsible for the trend in strain rate sensitivity with increasing strain.
机译:在室温至200℃的温度下,对单轴压缩测试了挤压镁合金AZ31(名义上为3 wt%的Al,1 wt%的Zn,0.3 wt%的Mn,其余为镁)的样品。进行了单调和应变速率跳跃测试,并确定了应变速率灵敏度和活化体积。在较低的测试温度下,应变率敏感性随应变增加到极限值而增加,而在200℃时,应变率敏感性最初遵循相似的趋势,但未在测试范围内达到极限。在测试过程中,温度对应变率敏感性的影响在150℃时较小。在测试过程中,激活量随应力的降低而降低了大约一个数量级。修改了一个分析模型以包含应变率敏感性,结果表明,通过孪生成有利于滑移的取向而发生的材料演化主要是应变率敏感性随应变增加的趋势。

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