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Crystal-plasticity finite-element analysis of inelastic behavior during unloading in a magnesium alloy sheet

机译:镁合金薄板卸载过程中非弹性行为的结晶塑性有限元分析

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摘要

A crystal-plasticity finite-element analysis of the loading–unloading process under uniaxial tension of a rolled magnesium alloy sheet was carried out, and the mechanism of the inelastic response during unloading was examined, focusing on the effects of basal and nonbasal slip systems. The prismatic and basal slip systems were mainly activated during loading, but the activation of the prismatic slip systems was more dominant. Thus the overall stress level during loading was determined primarily by the prismatic slip systems. The prismatic slip systems were hardly activated during unloading because the stress level was of course lower than that during loading. On the other hand, because the strength of the basal slip systems was much lower than that of the prismatic slip systems, the basal slip systems would be easily activated under the stress level during unloading in the opposite direction when their Schmid’s resolved shear stresses changed signs because of the inhomogeneity of the material. These results indicated that one explanation for the inelastic behavior during unloading was that the basal slip systems were primarily activated owing to their low strengths compared to that of the prismatic slip systems. Numerical tests using the sheets with random orientations and with the more pronounced texture were conducted to further examine the mechanism.
机译:对轧制镁合金薄板在单轴拉伸下的加载-卸载过程进行了晶体塑性有限元分析,并重点研究了基础和非基础滑移系统的影响,研究了卸载过程中的非弹性响应机理。棱柱滑移系统和基底滑移系统主要在加载过程中被激活,但棱柱滑移系统的激活更为主要。因此,加载过程中的总应力水平主要由棱柱滑动系统确定。棱柱形滑移系统在卸载过程中几乎没有激活,因为应力水平当然低于加载过程中的应力水平。另一方面,由于基础滑移系统的强度远低于棱柱形滑移系统,因此当施密特的解析切应力改变符号时,在相反方向的卸载过程中,基础滑移系统很容易在应力水平下被激活。因为材料的不均匀性这些结果表明,对卸荷过程中无弹性行为的一种解释是,基体滑移系统由于其强度低于棱柱形滑移系统而被首先激活。进行了具有随机取向和更明显纹理的片材的数值测试,以进一步检查该机理。

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