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Mechanical Properties and Microstructure Evolution of Mg-6 wt % Zn Alloy during Equal-Channel Angular Pressing

机译:等通道转角挤压Mg-6 wt%Zn合金的力学性能和组织演变

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摘要

Equal-channel angular pressing (ECAP) was performed on a Mg (6 wt %) Zn alloy at temperatures from 160 to 240 °C and the microstructures and mechanical properties were studied using optical microscopy, X-ray diffraction, scanning electron microscopy, transmission electron microscopy, and an electronic universal testing machine. The results showed that ECAP was effective for grain refinement and a bi-modal grain structure formed at low temperatures, which was stable during ECAP from 160 to 200 °C. MgZn 2 phase and Mg 4 Zn 7 phase were generated during the ECAP process. The mechanical properties remarkably increased after two repetitions of ECAP. However, the strengths could not be further improved by increasing the plastic deformation, but decreased when ECAP was performed between 200 and 240 °C. The mechanical properties of the ECAP Mg-6Zn alloy was determined by a combination of grain refinement strengthening, precipitation hardening, and texture softening.
机译:在160至240°C的温度下对Mg(6 wt%)Zn合金进行等通道角挤压(ECAP),并使用光学显微镜,X射线衍射,扫描电子显微镜,透射率研究了显微组织和力学性能。电子显微镜和电子通用测试机。结果表明,ECAP对晶粒细化有效,并且在低温下形成双峰晶粒结构,在160到200°C的ECAP期间稳定。在ECAP过程中生成了MgZn 2相和Mg 4 Zn 7相。两次重复ECAP后,机械性能显着提高。但是,强度不能通过增加塑性变形进一步提高,而在200至240°C之间进行ECAP时会降低。 ECAP Mg-6Zn合金的机械性能是通过晶粒细化强化,沉淀硬化和组织软化的组合来确定的。

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