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Homogeneous nucleation of iron from supersaturated vapor investigated by molecular dynamics simulation

机译:分子动力学模拟研究过饱和蒸汽中铁的均相成核

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The nucleation of particles from a supersaturated iron vapor is investigated by molecular dynamics simulations.The supersaturated iron vapor is embedded in an argon heat bath which removes the heat generated during the nucleation process.The nucleation rates are calculated from the cluster size statistics with a method proposed by Yasuoka and Matsumoto.Within this analysis no assumptions concerning the size of the critical cluster are required.The obtained values are consistent with the experimental data of iron nucleation rates.By applying the first nucleation theorem the size of the critical cluster is determined from nucleation rate data.It is in the order of one to three atoms which agrees with the observations of the cluster size fluctuations during the nucleation process.The excess energy of the critical cluster is estimated by the second nucleation theorem.
机译:通过分子动力学模拟研究了过饱和铁蒸气中颗粒的形核,将过饱和铁蒸气包埋在氩热浴中以去除成核过程中产生的热量,并通过一种方法从团簇尺寸统计中计算出成核率在此分析中,无需对临界簇的大小进行任何假设,所获得的值与铁成核率的实验数据一致,通过应用第一个成核定理,可以从成核速率数据,大约是一到三个原子,与成核过程中簇尺寸波动的观察结果相符,临界簇的多余能量由第二个成核定理估算。

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