Effect of lanthanum oxide on microstructure and mechanical properties of ZK60 magnesium alloy

IF 5.2 1区 化学 Q1 CHEMISTRY, APPLIED Journal of Rare Earths Pub Date : 2024-09-07 DOI:10.1016/j.jre.2024.09.002
Wei Qiu , Zhaoyuan Lu , Senmao Zhang , Shuanglong Li , Jian Chen , Wei Chen , Wei Li , Yanjie Ren , Jun Luo , Maohai Yao , Wen Xie
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Abstract

Different amounts of La2O3 were added to ZK60 alloy to observe the changes in microstructure and mechanical properties of ZK60-XLa2O3 (X = 0, 0.2 wt%, 0.5 wt%) composites. Our findings reveal that within the as-cast ZK60 alloy, the Mg-Zn binary phase is manifested as rod-shaped precipitates, exhibiting a dispersed distribution predominantly along the grain boundary regions. With the increase of La2O3 addition, the rod-like Mg-Zn binary phases are gradually replaced by Mg-Zn-La ternary phases, and these Mg-Zn-La ternary phases are semi-continuously distributed around the grain boundaries. Both ZK602 and ZK605 alloys result in a corresponding improvement in ductility after extrusion. It is noteworthy that the ductility of the as-extruded ZK605 alloy is increased by 59.4% compared to ZK60 at the expense of a reduction of only 3.9% in yield strength. Taken together, the significant increase in ductility of ZK605 is mainly due to the weakening of the basal texture, which is weakened by the redox reaction of La2O3 with the α-Mg matrix, generating the La element. The decrease in yield strength of ZK605 in the extruded state is closely related to the observed grain coarsening phenomenon and the basal texture weakening. At the same time, the ultimate tensile strength of ZK605 shows a slight increase, which is mainly due to the second phase strengthening. The Mg-Zn-La ternary phase exhibits a notably hard character, and it is evident that the distribution of this phase becomes progressively denser as the La2O3 content increases.

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氧化镧对 ZK60 镁合金微观结构和机械性能的影响
在 ZK60 合金中添加了不同数量的 La2O3,以观察 ZK60-XLa2O3(X = 0、0.2 wt%、0.5 wt%)复合材料微观结构和机械性能的变化。我们的研究结果表明,在铸造的 ZK60 合金中,镁锌二元相表现为棒状沉淀,主要沿晶界区域分散分布。随着 La2O3 添加量的增加,棒状镁锌二元相逐渐被镁锌拉三元相取代,这些镁锌拉三元相半连续地分布在晶界周围。ZK602 和 ZK605 合金在挤压后的延展性都得到了相应的改善。值得注意的是,与 ZK60 相比,挤压成型的 ZK605 合金的延展性提高了 59.4%,而屈服强度仅降低了 3.9%。综合来看,ZK605延展性的显著提高主要是由于基底纹理的减弱,而基底纹理的减弱是由于 La2O3 与 α-Mg 基体发生氧化还原反应,生成了 La 元素。挤压状态下 ZK605 屈服强度的降低与观察到的晶粒粗化现象和基底纹理弱化密切相关。同时,ZK605 的极限抗拉强度略有提高,这主要是由于第二相的强化。Mg-Zn-La 三元相表现出明显的坚硬特性,而且很明显,随着 La2O3 含量的增加,该相的分布变得逐渐致密。
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来源期刊
Journal of Rare Earths
Journal of Rare Earths 化学-应用化学
CiteScore
8.70
自引率
14.30%
发文量
374
审稿时长
1.7 months
期刊介绍: The Journal of Rare Earths reports studies on the 17 rare earth elements. It is a unique English-language learned journal that publishes works on various aspects of basic theory and applied science in the field of rare earths (RE). The journal accepts original high-quality original research papers and review articles with inventive content, and complete experimental data. It represents high academic standards and new progress in the RE field. Due to the advantage of abundant RE resources of China, the research on RE develops very actively, and papers on the latest progress in this field emerge every year. It is not only an important resource in which technicians publish and obtain their latest research results on RE, but also an important way of reflecting the updated progress in RE research field. The Journal of Rare Earths covers all research and application of RE rare earths including spectroscopy, luminescence and phosphors, rare earth catalysis, magnetism and magnetic materials, advanced rare earth materials, RE chemistry & hydrometallurgy, RE metallography & pyrometallurgy, RE new materials, RE solid state physics & solid state chemistry, rare earth applications, RE analysis & test, RE geology & ore dressing, etc.
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