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首页> 外文期刊>Molecular simulation >Thermal and pressure-induced martensitic phase transformations in a Ni-Al alloy modelled by Sutton-Chen embedded atom method
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Thermal and pressure-induced martensitic phase transformations in a Ni-Al alloy modelled by Sutton-Chen embedded atom method

机译:Sutton-Chen嵌入原子法模拟的Ni-Al合金中热和压力引起的马氏体相变

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摘要

The Ni-Al alloys which exhibit the thermoelastic martensitic phase transformations in the composition range from 60 to 65 atomic percentage (at.%) of Ni are widely used in the high technology applications. In this study, both thermal and pressure-induced phase transformations in Ni-37.5 at.%Al alloy model were investigated by a molecular dynamics (MD) method. Physical interactions between atoms in the alloy system were modelled using the Sutton-Chen version of the embedded atom method based on many-body interactions. The potential parameters for cross interactions between Ni and Al atoms were estimated by optimising the results obtained from the MD simulations, taking into account the experimental data including the crystal lattice properties of the model alloy in high temperature phase.
机译:在成分为Ni的60至65原子百分比(原子%)范围内表现出热弹性马氏体相变的Ni-Al合金被广泛用于高科技应用中。在这项研究中,通过分子动力学(MD)方法研究了Ni-37.5 at。%Al合金模型中热和压力引起的相变。合金系统中原子之间的物理相互作用是使用基于多体相互作用的嵌入式原子方法的Sutton-Chen版本建模的。考虑到包括模型合金在高温相中的晶格性质在内的实验数据,通过优化从MD模拟获得的结果来估计Ni和Al原子之间的交叉相互作用的潜在参数。

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