Melting of micro/nanoparticles in an alloy melt with the Soret effect

IF 1.5 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Philosophical Magazine Pub Date : 2023-05-31 DOI:10.1080/14786435.2023.2215548
Chunmei Yang, Mingwen Chen, G. Zheng, Mingli Zhang, Yan Chen, Zidong Wang
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Abstract

ABSTRACT The melting of micro/nanoparticles considering the Soret effect in an alloy melt is studied in terms of the asymptotic method. The results reveal that the positive Soret coefficient weakens the dynamic disequilibrium near the interface, and then enhances the melting temperature of the particle and decreases the melting speed of the particle. The negative Soret coefficient strengthens the dynamic disequilibrium near the interface, and then reduces the melting temperature of the particle and increases the melting speed of the particle. The positive Soret coefficient weakens the accumulation of the solute flux near the interface and enhances the solute concentration. The negative Soret coefficient strengthens the accumulation of the solute flux near the interface and reduces the solute concentration. The size dependence of the melting temperature considering the Soret coefficient is quantitatively consistent with the experimental data, especially for the micro/nanoparticles with a radius smaller than 5 nm.
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微/纳米颗粒在合金熔体中的熔化具有Soret效应
用渐近方法研究了考虑Soret效应的微/纳米颗粒在合金熔体中的熔化过程。结果表明,正的Soret系数减弱了界面附近的动态不平衡,从而提高了颗粒的熔化温度,降低了颗粒的熔化速度。负Soret系数增强了界面附近的动态不平衡,从而降低了颗粒的熔化温度,提高了颗粒的熔化速度。Soret系数的增大减弱了界面附近溶质通量的积累,提高了溶质浓度。负Soret系数增强了界面附近溶质通量的积累,降低了溶质浓度。考虑Soret系数的熔化温度对尺寸的依赖关系与实验数据在数量上是一致的,特别是对于半径小于5 nm的微/纳米颗粒。
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来源期刊
Philosophical Magazine
Philosophical Magazine 工程技术-材料科学:综合
自引率
0.00%
发文量
93
审稿时长
4.7 months
期刊介绍: The Editors of Philosophical Magazine consider for publication contributions describing original experimental and theoretical results, computational simulations and concepts relating to the structure and properties of condensed matter. The submission of papers on novel measurements, phases, phenomena, and new types of material is encouraged.
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