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Effects of calcium and rare-earth elements on the microstructure and tension-compression yield asymmetry of ZEK100 alloy

机译:钙和稀土元素对ZEK100合金组织和拉伸压缩屈服不对称的影响

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摘要

Variations of the Mg-Zn-Zr alloy ZK100 were cast and extruded containing rare-earth elements and different amounts of Ca (0.4 and 0.8 wt%). After extrusion and heat treatment, the tensile and compressive mechanical properties of the alloys were evaluated at room temperature. The effects of calcium and rare-earth elements on the microstructure, texture and tension-compression yield asymmetry of the ZEK100-based alloys were studied. The microstructural investigation revealed fine and uniformly distributed Mg-Ca and Mg-RE precipitates throughout the volume of the specimens. A weak texture and a fully recrystallized and homogeneous grain structure were observed in the ZEK100-Ca alloys. The reduced yield asymmetry of the ZEK100-Ca alloys is attributed to the fine grain size, the weak texture, and the small precipitates of these alloy variants.
机译:Mg-Zn-Zr合金ZK100的变体经铸造和挤压加工而成,其中包含稀土元素和不同含量的Ca(0.4和0.8 wt%)。挤压和热处理后,在室温下评估合金的拉伸和压缩力学性能。研究了钙和稀土元素对ZEK100基合金微观结构,织构和拉伸压缩屈服不对称的影响。显微组织研究表明,在整个样品体积中,Mg-Ca和Mg-RE沉淀物细小且均匀分布。在ZEK100-Ca合金中观察到了较弱的织构以及完全重结晶和均匀的晶粒结构。 ZEK100-Ca合金的屈服不对称性降低归因于这些合金变体的细晶粒尺寸,较弱的织构和较小的析出物。

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