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Mechanically Alloyed Magnesium Based Nanostructured Alloy Powders for Biomedical Applications

机译:用于生物医学应用的机械合金化镁基纳米结构合金粉末

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Mechanical alloying (MA) is one of the most commonly used methods in preparing metallic materials. We are especially interested in its ability to produce nanostructured materials. MA has rarely been used in producing nanostructured magnesium base alloys due to the process complexity and flammable nature of the alloy. In this work, high energy ball milling of elemental powders, Mg, Zn and Zr, was investigated for the MA of ZK50 alloy. Crystallite size, lattice strain, as a function of total milling energy (required for complete alloying) were characterized using X-ray diffraction. Scanning electron microscopy was employed to determine the influence of milling time on powder morphology. Consolidation of the milled powders into thin sheets was conducted via hot pipe rolling at 0.4 T_m. Results showed that complete alloying was achieved at 45 milling hours which was associated with particle size reduction to 600 nm and crystallite size of 8.8 nm.
机译:机械合金化(MA)是制备金属材料中最常用的方法之一。我们对它生产纳米结构材料的能力特别感兴趣。由于合金的工艺复杂性和易燃性,MA很少用于生产纳米结构镁基合金。在这项工作中,对ZK50合金的MA进行了元素粉末Mg,Zn和Zr的高能球磨研究。使用X射线衍射表征微晶尺寸,晶格应变与总研磨能的函数(完全合金化所需)。使用扫描电子显微镜确定研磨时间对粉末形态的影响。通过在0.4T_m的热管轧制将研磨的粉末固结成薄片。结果表明,在45个小时的铣削时间就实现了完全合金化,这与减小至600 nm的粒径和8.8 nm的微晶尺寸有关。

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