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Insight into the Role and Mechanism of Nano MgO on the Hot Compressive Deformation Behavior of Mg-Zn-Ca Alloys

机译:洞察纳米MgO对Mg-Zn-Ca合金热压缩变形行为的作用和机制

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摘要

Aiming to investigate the role and mechanism of nano MgO on the hot compressive deformation behavior of Mg alloys, the Mg-3Zn-0.2Ca alloy (MZC, in wt%) and the 0.2MgO/Mg-3Zn-0.2Ca alloy (MZCM, in wt%) were investigated systematically in the temperature range of 523–673 K and the strain rate range of 0.001–1 s−1. MZCM shows finer grains and second phase because of the refinement effects of added MgO. Flow behavior analysis shows that the addition of nano MgO promotes the dynamic recrystallization (DRX) of MZC. The flow stress of MZCM is lower than that of MZC during deformation at 523–623 K but exhibits a reverse trend at 673 K and 0.1–1 s−1. The constitutive analysis indicates that dislocation climb is the dominant deformation mechanism for MZC and MZCM. The addition of nano MgO particles decreases the stress sensitivity and deformation resistance for thermal deformation and improves the plasticity of the MZC. Besides, according to the processing map constructed at strains of 0.7 and corresponding microstructure evolution, MZCM exhibits higher power dissipation efficiency and smaller instability regions than MZC, and the optimum hot working condition for MZCM was determined to be at 623–653 K and 0.01–0.001 s−1.
机译:旨在探讨纳米MgO对Mg合金热压缩变形行为的作用和机制,Mg-3zn-0.2Ca合金(MZC,WT%)和0.2MGO / Mg-3Zn-0.2Ca合金(MZCM,在523-673k的温度范围和0.001-1S-1的应变率范围内系统地研究了WT%。由于添加的MgO的细化作用,MZCM显示更精细的晶粒和第二阶段。流动行为分析表明,添加纳米MgO促进MZC的动态再结晶(DRX)。 MZCM的流量应力低于523-623k期间MZC的流量应力,但在673k和0.1-1s-1处表现出反向趋势。本构关系分析表明位错升高是MZC和MZCM的主要变形机制。添加纳米MgO颗粒可降低热变形的应力灵敏度和变形性,并提高MZC的可塑性。此外,根据在0.7的菌株和相应的微观结构演化下构建的处理图,MZCM表现出比MZC更高的功率耗散效率和更小的不稳定性区域,并且测定MZCM的最佳热工作条件为623-653 K和0.01- 0.001 s-1。

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