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Complex Modeling of Melting of an Aluminum Nanoparticle

机译:铝纳米颗粒熔化的复杂建模

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摘要

A semi-empirical model of molecular dynamics is proposed within the molecular dynamics approach. The model is verified against the experimental dependence of the melting temperature of aluminum nanoparticles on their size. The specific heat of the particle and the phase transition heat are determined as functions of the initial size and temperature of the particle. It is demonstrated that these dependences tend to the limiting dependences, which describe the particle size in the volume phase, as the particle size increases. A comparison of the aluminum nanoparticle melting characteristics calculated by the model of molecular dynamics and by the phenomenological model reveals reasonable agreement in terms of the melting time.
机译:在分子动力学方法中,提出了分子动力学的半经验模型。针对铝纳米颗粒的熔化温度对其尺寸的实验依赖性验证了该模型。根据颗粒的初始尺寸和温度确定颗粒的比热和相变热。已证明这些依赖性趋向于限制依赖性,其随着粒度的增加而描述了体积相中的粒度。通过分子动力学模型和现象学模型计算的铝纳米颗粒熔融特性的比较表明,在熔融时间方面合理的一致性。

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