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首页> 外文期刊>Journal of Crystal Growth >Composition transients and saturation phenomena at a liquid metal-vapour interface: An advanced theoretical approach and an application to the oxidation of tin in a vacuum
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Composition transients and saturation phenomena at a liquid metal-vapour interface: An advanced theoretical approach and an application to the oxidation of tin in a vacuum

机译:液态金属-蒸气界面处的成分瞬变和饱和现象:一种先进的理论方法及其在真空中氧化锡的应用

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摘要

This work is aimed to advance the understanding of interfacial saturation phenomena for liquid metal surfaces. The interactions between a liquid metal drop and an oxidising atmosphere can be described by a physical-mathematical description of the liquid metal interface/surrounding environment interface evolution. The closed system and equilibrium assumption were rejected and reference was made to a liquid metal drop as an open system and its related time variation conditions (stationary drop assumption). A better demonstration of the experimental relevance of evolution times towards the stationary condition, in particular for liquid tin is done.
机译:这项工作旨在增进对液态金属表面界面饱和现象的理解。液态金属滴和氧化气氛之间的相互作用可以通过液态金属界面/周围环境界面演变的物理数学描述来描述。封闭系统和平衡假设均被拒绝,并以液态金属液滴作为开放系统及其相关的时间变化条件(静止液滴假设)为参考。更好地证明了演化时间对平稳状态的实验相关性,特别是对于液态锡。

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