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An Acoustic Emission Study of Deformation Behavior of Wrought Mg Alloys

机译:变形镁合金变形行为的声发射研究

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The influence of the pre-compression level on subsequent tensile deformation behavior has been investigated for two extruded Mg alloys with a different grain size distribution. The Mg-Zn-R are earth alloy has homogeneous microstructure, while the Mg-Al-Zn alloy exhibits bimodal microstructure. Deformation tests were performed at room temperature and at a constant strain rate of 10~(-3) s~(-1). Three pre-compression stress levels were chosen to receive microstructure containing a low number of twins, partially and fully twinned grains, respectively. The concurrent acoustic emission (AE) measurement provides real time information about collective dislocation motion and twin nucleation. Active deformation mechanisms during tensile loading are discussed in term of the AE response.
机译:对于两种具有不同晶粒尺寸分布的镁合金,已经研究了预压缩水平对随后的拉伸变形行为的影响。 Mg-Zn-R土类合金具有均匀的微观结构,而Mg-Al-Zn合金则表现出双峰的微观结构。在室温下以10〜(-3)s〜(-1)的恒定应变速率进行变形测试。选择三个预压缩应力水平以接收分别包含少量孪晶,部分孪晶和完全孪晶的显微组织。同时声发射(AE)测量提供有关集体位错运动和双核的实时信息。根据AE响应讨论了拉伸载荷期间的主动变形机制。

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