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High-strength Zr-based bulk amorphous alloys containing nanocrystalline and nanoquasicrystalline particles

机译:包含纳米晶和纳米准晶颗粒的高强度Zr基块体非晶合金

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摘要

It was recently found that the addition of special elements leading to the deviation from the three empirical rules for the achievement of high glass-forming ability causes new mixed structures consisting of the amorphous phase containing nanoscale compound or quasicrystal particles in Zr–Al–Ni–Cu–M (M=Ag, Pd, Au, Pt or Nb) bulk alloys prepared by the copper mold casting and squeeze casting methods. In addition, the mechanical strength and ductility of the nonequilibrium phase bulk alloys are significantly improved by the formation of the nanostructures as compared with the corresponding amorphous single phase alloys. The composition ranges, formation factors, preparation processes, unique microstructures and improved mechanical properties of the nanocrystalline and nanoquasicrystalline Zr-based bulk alloys are reviewed on the basis of our recent results reported over the last two years. The success of synthesizing the novel nonequilibrium, high-strength bulk alloys with good mechanical properties is significant for the future progress of basic science and engineering.
机译:最近发现,添加特殊元素导致偏离实现高玻璃形成能力的三个经验规则,会导致新的混合结构,其中包括Zr–Al–Ni–中包含纳米级化合物或准晶体颗粒的非晶相。通过铜铸模和挤压铸造方法制备的Cu–M(M = Ag,Pd,Au,Pt或Nb)块状合金。另外,与相应的非晶单相合金相比,通过形成纳米结构,非平衡相块状合金的机械强度和延展性得到了显着改善。基于最近两年报告的最新结果,对纳米晶和纳米准晶Zr基块状合金的组成范围,形成因子,制备工艺,独特的微观结构和改善的机械性能进行了综述。合成具有良好机械性能的新型非平衡,高强度块状合金的成功对基础科学和工程学的未来发展具有重要意义。

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