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Study of the reactive dynamics of nanometric metallic multilayers using molecular dynamics: the Al-Ni system

机译:利用分子动力学研究纳米金属多层的活性动力学研究:AL-NI系统

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A molecular dynamics study of a layered Ni-Al-Ni system is developed using an embedded atom method potential. The specific geometry is designed to model a Ni-Al nanometric metallic multilayer. The system is initially thermalized at the fixed temperature of 600 K. We first observe the interdiffusion of Ni and Al at the interfaces, which is followed by the spontaneous phase formation of B2-NiAl in the Al layer. The solid-state reaction is associated with a rapid system's heating which further enhances the diffusion processes. NiAl phase is organized in small regions separated by grain boundaries. This study confirms the hypothesis of a layer-by-layer development of the new phase. For longer times, the temperature is notably higher (> 1000 K) and the system may partly lose some its B2-NiAl microstructure in favor of the formation of Ni_3Al in L12 configuration. This work shows the spontaneous development of a real exothermic solid-state reaction in metallic nanosystems mostly constituted by interfaces.
机译:使用嵌入的原子方法电位开发了层状Ni-Al-Ni系统的分子动力学研究。特定几何体设计为模拟Ni-Al纳米金属多层。该系统最初在600K的固定温度下热化。我们首先观察Ni和Al在界面的相互扩散,然后在Al层中的B2-Nial的自发相形成。固态反应与快速系统的加热相关,进一步增强扩散过程。 Nial阶段组织在由晶界分开的小区域中。本研究证实了新阶段的逐层开发的假设。对于更长的时间,温度尤其更高(> 1000k),系统可以部分地失去一些其B2-Nial微观结构,有利于L12构造中的Ni_3Al的形成。这项工作表明,金属纳米系统中的真正放热固态反应的自发性发展主要由界面构成。

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