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Short-range-order effects on intrinsic plasticity of metallic glasses

机译:短程效应对金属玻璃固有塑性的影响

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Through a systematical analysis of the elastic moduli for 137 metallic glasses (MGs) and 56 polycrystalline metals, we use a simple model developed by Knuyt et al. [J. Phys. F: Met. Phys. 16 (1986) p.1989; Phil. Mag. B 64 (1991) p.299] based on a Gaussian distribution for the first-neighbor distance to reveal the short-range-order (SRO) structural conditions for plasticity of MGs. It is found that the SRO structure with dense atomic packing, large packing dispersion and a significant anharmonicity of atomic interaction within an MG is favorable for its global plasticity. Although these conditions seem paradoxical, their perfect matching is believed to be a key for designing large plastic bulk MGs not only in compression but also in tension.
机译:通过对137种金属玻璃(MGs)和56种多晶金属的弹性模量的系统分析,我们使用了Knuyt等人开发的简单模型。 [J.物理外:见过。物理16(1986)p.1989;菲尔魔术师B 64(1991)p.299]基于第一邻居距离的高斯分布,揭示了MG塑性的短程结构(SRO)结构条件。研究发现,SRO结构具有致密的原子堆积,较大的堆积分散以及MG内部原子相互作用的显着非谐性,有利于其整体可塑性。尽管这些条件似乎是自相矛盾的,但它们的完美匹配被认为是设计大型塑料散装MG的关键,不仅在压缩方面而且在张力方面。

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