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Effect of Multi-Pass Bending Deformation on Microstructure Evolution and Mechanical Properties of AZ31 Alloy Sheet

机译:多道次弯曲变形对AZ31合金薄板组织演变和力学性能的影响

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The rolled AZ31 Mg alloy sheets were processed by multi-pass bending (MPB) process at room temperature and followed by annealing treatment. Mechanical properties of the as-received and MPB sheets in annealed conditions were examined based on the concurrent microstructure and texture evolution. The results show that the room temperature ductility of the Mg sheets was improved by multi-pass bending process. Moreover, the (0002) basal texture was drastically weakened. Enhanced the ambient mechanical properties, such as lower yield strength and larger uniform elongation, were fabricated by MPB path due to the weak basal texture. The microstructure and mechanical responses were characterized and discussed.
机译:轧制的AZ31 Mg合金板在室温下通过多道次弯曲(MPB)工艺进行处理,然后进行退火处理。基于同时存在的微观结构和织构演变,检查了退火条件下的原样和MPB板材的机械性能。结果表明,通过多次弯曲处理可以改善镁板的室温延展性。此外,(0002)基础质地大大减弱。由于弱的基础纹理,通过MPB路径制造了增强的环境机械性能,例如较低的屈服强度和较大的均匀伸长率。表征和讨论了微观结构和力学响应。

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