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Effect of the Zn Content on the Compression Behaviour of Mg5Nd(Zn): An In Situ Synchrotron Radiation Diffraction Study

机译:锌含量对Mg5Nd(Zn)压缩行为的影响:原位同步辐射辐射衍射研究

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The properties of commercially viable Mg alloys are not sufficient for many of the envisaged applications. The combination of Zn and rare earth metals is one of the most effective ways to enhance the mechanical properties of Mg alloys. In situ synchrotron radiation diffraction is a unique method to investigate the dynamic microstructural processes occurring during deformation. Azimuthal angle-time plots give information on grain structure changes that can be correlated with grain rotation, twinning, recovery and recrystallization. As-cast Mg5Nd, Mg5Nd3Zn, Mg5Nd5Zn and Mg5Nd7Zn alloys were investigated during compression at room temperature, at 200 ℃ and at 350 ℃ with a strain rate of 10~(-3) s~(-1) until 10% deformation. The results and post mortem metallography were compared. At high temperatures grain rotation and sub-grain formation are active to obtain the final texture, while at room temperature twinning is the dominant deformation mechanism.
机译:商业上可行的镁合金的性能不足以满足许多设想的应用。锌和稀土金属的结合是增强镁合金力学性能的最有效方法之一。原位同步加速器辐射衍射是研究变形过程中发生的动态微结构过程的独特方法。方位角-时间图可提供有关晶粒结构变化的信息,这些变化可能与晶粒旋转,孪生,恢复和再结晶有关。研究了Mg5Nd,Mg5Nd3Zn,Mg5Nd5Zn和Mg5Nd7Zn铸态合金在室温,200℃和350℃压缩期间的应变速率为10〜(-3)s〜(-1)直至变形10%的情况。比较结果和验尸金相。在高温下,晶粒旋转和亚晶粒形成是活跃的,以获得最终的质地,而在室温下,孪晶是主要的变形机制。

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