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Experimental and numerical investigation of texture development during hot rolling of magnesium alloy AZ31

机译:镁合金AZ31热轧过程中织构发展的实验和数值研究

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Due to the deformation mechanisms and the typical basal texture rolled magnesium sheets show a significant asymmetry of flow stress in tension and compression. In order to avoid this undesired behavior it is necessary to achieve non-basal texture during rolling, or at least, to reduce the intensity of the basal texture component. The reduction of the anisotropy caused by the basal texture is very important for subsequent forming processes. This project aims at optimizing the hot rolling process with special consideration of texture effects. The development of the model is carried out in close cooperation with the experimental work on magnesium alloy AZ31 .The experimental results are required for the determination of model parameters and for the verification of the model. Deformation-induced texture is described by the visco-plastic self-consistent (VPSC) model of Lebensohn and Tome. The combination of deformation and recrystallization texture models is applied to hot compression tests on AZ31, and it is found, that the model describes the observed texture and hardening/softening behavior well. In some cases rotation recrystallization occurs in AZ31 which appears to be a possibility to reduce the undesired basal rolling texture.
机译:由于变形机理和典型的基础纹理,轧制的镁片在拉伸和压缩过程中表现出明显的不对称流动应力。为了避免这种不希望的行为,必须在轧制过程中获得非基础纹理,或者至少降低基础纹理成分的强度。由基础纹理引起的各向异性的减小对于随后的形成过程非常重要。该项目旨在优化热轧过程,并特别考虑纹理效果。该模型的开发与镁合金AZ31的实验工作紧密合作进行。确定模型参数和验证模型所需的实验结果。 Lebensohn和Tome的粘塑性自洽(VPSC)模型描述了变形诱导的织构。将变形和再结晶织构模型的组合应用于AZ31的热压缩测试,发现该模型很好地描述了观察到的织构和硬化/软化行为。在某些情况下,AZ31会发生旋转再结晶,这似乎有可能减少不希望的基础轧制组织。

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