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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Competitive B2 and B33 Nucleation during Solidification of Ni50Zr50 Alloy: Molecular Dynamics Simulation and Classical Nucleation Theory
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Competitive B2 and B33 Nucleation during Solidification of Ni50Zr50 Alloy: Molecular Dynamics Simulation and Classical Nucleation Theory

机译:竞争性B2和B33在Ni50Zr50合金的凝固过程中成核:分子动力学模拟和古典成核理论

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摘要

We investigated the homogenous nucleation of the stoichiometric B2 and B33 phases in the Ni50Zr50 alloy using the persistent embryo method and the classical nucleation theory. The two phases become very close competitors at large supercoolings, which is consistent with the experimental observations. In the case of the B2 phase, the linear temperature dependence of the solid-liquid interface (SLI) free energy extrapolated to the melting temperature leads to the same value as the one obtained from the capillarity fluctuation method (CFM). In the case of the B33 phases, the SLI free energy is also a linear function of temperature at large supercoolings, but the extrapolation to the melting temperature leads to a value which is considerably different from the CFM value. This is consistent with the large anisotropy of the SLI properties of the B33 phase nearby the melting temperature observed in the simulation of the nominally flat interface migration.
机译:我们使用持续的胚胎方法和典型成核理论研究了Ni50Zr50合金中化学计量B2和B33相的均匀成核。 两个阶段在大型超级冷水中变得非常接近竞争对手,这与实验观察一致。 在B2相的情况下,固体液体界面(SLI)自由能的线性温度依赖性将其推断为熔融温度导致与从毛细管性波动方法(CFM)中获得的值相同的值。 在B33相的情况下,SLI自由能也是大过冷却的温度的线性函数,但是对熔融温度的外推导致与CFM值相当不同的值。 这与位于熔化温度的B33相位的SLI性质的大部分各向异性一致,在标称平面界面迁移的模拟中观察到的熔融温度。

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