Calculation of mechanical properties of solids using molecular dynamics method

N. Miyazaki, Yasunori Shiozaki
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引用次数: 22

Abstract

We describe the calculation of mechanical properties of solids using the molecular dynamics method. The thermal expansion coefficient and elastic constants of α-Fe are calculated using an empirical potential, that is, the Johnson potential. The thermal expansion coefficient is calculated using a differential operation of the temperature dependence of the lattice constant obtained from the NPT ensemble molecular dynamics analysis. Reasonable agreement is found between the analytical results and measured data up to the phase transition temperature. The elastic constants are calculated from the stress-strain curves obtained from the NVT ensemble, the initial lattice constant of which is modified based on the result of the NPT ensemble. The analytical results agree reasonably well with the measured data up to 400 K.
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用分子动力学方法计算固体的力学性能
我们描述了用分子动力学方法计算固体力学性能的方法。采用经验势即Johnson势计算α-Fe的热膨胀系数和弹性常数。热膨胀系数的计算采用微分运算的晶格常数的温度依赖性从核不扩散系综分子动力学分析得到。在相变温度范围内,分析结果与实测数据吻合较好。根据NVT系综得到的应力-应变曲线计算弹性常数,并根据NPT系综的结果修正了NVT系综的初始晶格常数。分析结果与400 K范围内的实测数据吻合较好。
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