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Implementation of Twin Reorientation and Softening Schemes in a Polycrystal Plasticity Model for Mg Alloys

机译:MG合金多晶塑性模型中双重新定向和软化方案的实现

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Uniaxial compression tests on hot-rolled AZ31 Mg alloy were carried out at a temperature of 300°C. In order to investigate work hardening and texture evolution during plastic deformation, cylindrical specimens were compressed to the rolling direction. Experimental investigation reveals that flow curves are strongly dependent on microstructure evolution such as deformation twinning and softening phenomenon. The occurrence of deformation twinning and softening phenomenon was revealed by the observation of microtexture using electron backscatter diffraction (EBSD). A visco-plastic self-consistent (VPSC) polycrystal model was used to simulate the work hardening, softening and texture evolution during the uniaxial compression. In order to calculate orientation of deformation twins, predominant twin reorientation (PTR) scheme was implemented into the polycrystal model. A softening scheme was also implemented in the polycrystal model to predict softening phenomenon and texture evolution after a peak stress.
机译:在热轧AZ31mg合金上进行单轴压缩试验在300℃的温度下进行。为了研究塑性变形期间的工作硬化和质地演化,圆柱形试样被压缩到滚动方向。实验研究表明,流动曲线强烈依赖于微观结构演化,例如变形孪氮和软化现象。通过使用电子反向散射衍射(EBSD)的微调来揭示变形孪晶和软化现象的发生。使用粘型塑料自我一致(VPSC)多晶模型用于模拟单轴压缩过程中的硬化,软化和纹理演化。为了计算变形双胞胎的取向,将主要的双重新定向(PTR)方案实施到多晶模型中。在多晶模型中也实施了软化方案,以预测峰值应力后的柔软现象和纹理演化。

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