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Effect of Ni-Nb Metallic Glass on Moderating the Shock Damage in Crystalline Ni-Amorphous Ni_(62)Nb_(38) Nanocomposite Structure: A Molecular Dynamics Study

机译:Ni-Nb金属玻璃对缓和结晶Ni-非晶态Ni_(62)Nb_(38)纳米复合结构中冲击损伤的影响:分子动力学研究

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Due to high strength and better corrosion properties, Ni-based alloy components are used in different machineries that are exposed to extreme/impact loading conditions. Structural re-designing of this metallic system can improve their impact resistance and bearing capacity. In this perspective, we have performed molecular dynamics simulation to analyze the effect of Ni-Nb metallic glass on attenuating the shock damage in crystalline Ni-amorphous Ni-Nb nanolaminate structure. Results have shown that the Ni_(62)Nb_(38) metallic glass has effectively mitigated the damage in the crystalline Ni region at 0.5 and 0.8 km/s. Structurally, Ni_(62)Nb_(38)metallic glass has shown better stability as higher icosahedral clusters are observed when compared with other Ni-Nb glass compositions after the shock propagation. However, at higher shock velocities, the presence of amorphous phase in the nanolaminate is insignificant as the shock causes large dislocation generation and localized amorphization.
机译:由于具有高强度和更好的腐蚀性能,镍基合金部件可用于暴露于极端/冲击载荷条件下的各种机械中。重新设计此金属系统可以提高其抗冲击性和承载能力。从这个角度出发,我们已经进行了分子动力学模拟,以分析Ni-Nb金属玻璃对减弱晶体Ni-非晶非晶态Ni-Nb纳米层状结构的冲击损伤的作用。结果表明,Ni_(62)Nb_(38)金属玻璃有效地减轻了0.5和0.8 km / s的结晶Ni区的损伤。在结构上,Ni_(62)Nb_(38)金属玻璃表现出更好的稳定性,因为与其他Ni-Nb玻璃成分在冲击传播后相比,观察到更高的二十面体簇。然而,在较高的冲击速度下,纳米层压板中无定形相的存在是微不足道的,因为冲击会引起大量位错的产生和局部非晶化。

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