Effect of Concentration of Mo on the Mechanical behavior of γ UMo: an Atomistic Study

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引用次数: 1

Abstract

We performed molecular dynamics simulation on nanoindentation ofγ phase Uranium Molybdenum alloys using spherical indenter. A ternary potential developed for UMoXe was utilized. We calculated the updated values for hardness and reduced elastic modulus at different concentrations of Mo. The whole process of deformation and dislocation analysis was visualized using OVITO. We found an increase in deformation withincreasein stress while dislocations are not found anyhow induced defects have been distributed throughout the simulation cell randomly. The increase in concentration affected the hardness and reduced elastic modulus significantly. This study provides insights into the structure and mechanical characteristics of γ UMo under deformation.
Mo浓度对γ - UMo力学行为影响的原子性研究
利用球形压头对γ相铀钼合金的纳米压痕进行了分子动力学模拟。利用了为UMoXe开发的三元电位。我们计算了不同Mo浓度下的硬度和降低弹性模量的更新值,并使用OVITO对变形和位错分析的整个过程进行了可视化。我们发现变形随应力的增加而增加,但没有发现位错,但诱导缺陷随机分布在整个模拟单元中。浓度的增加显著影响了材料的硬度和弹性模量的降低。本研究揭示了γ UMo在变形作用下的结构和力学特性。
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