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High-Precision Nucleation Rate Measurements for Higher Melting Metals

机译:更高熔点金属的高精度成核速率测量

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摘要

Nucleation of a crystal in undercooled melts of higher melting face-centered-cubic-metals has often been studied in the past. However, the data available were not of sufficient accuracy and only covered nucleation rates in too small of a range to allow precise conclusions concerning the nature of the underlying process as well as concerning important parameters such as the solid-liquid interface free energy that can in principle be deducted from such analyses. One way to circumvent ambiguities and analyze nucleation kinetics under well-defined conditions experimentally is given by performing statistically significant numbers of repeated single droplet experiments. Application of proper statistics analyses yields nucleation rates that are independent of a specific nucleation model. The first studies that were conducted in accordance with this approach on pure model materials revealed that the approach is valid. The results are comparable to those obtained by classic nucleation theory applied to experimental data, and it was shown that one might need to rethink the common assumption that heterogeneous nucleation is almost always responsible for solidification initiation. The current results also show that often-used models for the solid-liquid interface free energy might lead to overestimated values.
机译:过去经常研究过高熔点面心立方金属的过冷熔体中晶体的成核。但是,可用数据不够准确,仅涵盖了很小范围内的成核速率,以致无法得出有关基础过程的性质以及重要参数(如固液界面自由能)的准确结论。从这种分析中可以推导出原理。通过执行统计上可观数量的重复单滴实验,可以给出一种在模棱两可的条件下通过实验避免歧义和分析成核动力学的方法。适当的统计分析的应用产生的成核速率与特定的成核模型无关。根据这种方法对纯模型材料进行的第一批研究表明,该方法是有效的。结果与通过经典成核理论应用于实验数据所获得的结果相当,并且表明可能需要重新考虑一个普遍的假设,即异质成核几乎总是导致凝固开始。当前结果还表明,固液界面自由能的常用模型可能会导致高估值。

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