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Development of Gradient Concentrated Single-Phase Fine Mg-Zn Particles and Effect on Structure and Mechanical Properties

机译:梯度富集单相Mg-Zn细粉的研制及其对结构和力学性能的影响

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摘要

In this study, we used powder metallurgy process to develop gradient concentrated single-phase fine magnesium-zinc alloy particles. Fine magnesium particles were initially dry coated with nanometer size zinc particles in homogeneous manner and cold compacted to cylindrical billet. Zinc atoms were diffused in to the magnesium particles during high-temperature sintering process and produced the single-phase gradient solid solution. The gradient concentration of zinc induced gradual grain refinement in the magnesium particles. The powder metallurgy processed gradient concentrated alloy particles showed an excellent level of hardness, strength, ductility, and fracture toughness in their bulk form, which was even much higher when compared with unalloyed magnesium. Despite having gradient solid solution structure, the developed alloy particles showed homogeneous properties in their bulk form.
机译:在这项研究中,我们使用粉末冶金工艺来开发梯度浓缩的单相镁锌合金细颗粒。首先将细的镁颗粒以均一的方式用纳米尺寸的锌颗粒干涂,然后冷压成圆柱状坯料。锌原子在高温烧结过程中扩散到镁颗粒中,产生单相梯度固溶体。锌的梯度浓度导致镁颗粒中的晶粒逐渐细化。粉末冶金加工的梯度浓合金颗粒以其整体形式显示出极佳的硬度,强度,延展性和断裂韧性,与未合金化的镁相比,甚至更高。尽管具有梯度固溶体结构,但是所开发的合金颗粒在其本体形式下显示出均一的性能。

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