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A combined strategy to enhance the properties of Zn by laser rapid solidification and laser alloying

机译:激光快速凝固和激光合金化提高Zn性能的组合策略

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摘要

The orthopedic application of Zn is limited owing to the poor strength and low plasticity. In this study, a novel strategy by combining rapid solidification obtained by selective laser melting (SLM) and alloying with Mg was proposed to improve the mechanical properties of Zn. The microstructures, mechanical properties, as well as in vitro cytocompatibility of SLM processed Zn-xMg (x = 0-4 wt%) were studied systematically. Results shown that SLM processed Zn-xMg alloys consisted of fine equiaxed alpha-Zn grains with homogeneously precipitated Mg2Zn11 along grain boundaries. More importantly, the grains size of alpha-Zn was decreased from 104.4 +/- 30.4 mu m to 4.9 +/- 1.4 mu m with Mg increasing. And Mg mainly dissolved in alpha-Zn developing into supersaturated solid solution due to rapid solidification effect. As a consequence, the ultimate tensile strength and elongation were enhanced by 361% and 423%, respectively, with Mg containing up to 3 wt%. Meanwhile, alloying with Mg enhanced the corrosion resistance of Zn, with the degradation rate decreasing from 0.18 +/- 0.03 mm year(-1) to 0.10 +/- 0.04 mm year(-1). Furthermore, SLM processed Zn-xMg exhibited good biocompatibility. This research suggested that SLM processed Zn-3Mg alloy was a potential biomaterial for orthopedic applications.
机译:由于强度差和低可塑性,Zn的整形外观应用是有限的。在该研究中,提出了通过选择性激光熔化(SLM)获得的快速凝固和用Mg合金化的新策略,以改善Zn的机械性能。系统地研究了SLM加工Zn-XMG(X = 0-4wt%)的微观结构,机械性能以及体外细胞织立性。结果表明,SLM加工的Zn-XMG合金由细平均α-Zn颗粒组成,沿晶界均匀地沉淀Mg2Zn11。更重要的是,α-Zn的晶粒尺寸从104.4 +/-30.4μmm〜4.9 +/- 1.4 mu m增加,mg增加。由于快速凝固效果,Mg主要溶于α-Zn的α-Zn开发成超饱和固溶体。因此,最终拉伸强度和伸长率分别增强了361%和423%,含有高达3wt%的Mg。同时,用Mg的合金化增强了Zn的耐腐蚀性,降解速率从0.18 +/- 0.03mm年(-1)降至0.10 +/- 0.04 mm年(-1)。此外,SLM加工后的Zn-XMG表现出良好的生物相容性。该研究表明,SLM加工的Zn-3Mg合金是用于整形外科应用的潜在生物材料。

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