Coalescence of second phase particles in phase separation

R. Hopper, D. Uhlmann
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引用次数: 16

Abstract

A model has been suggested by Haller and others for the development of interconnected submicrostructures in glasses which involves the nucleation, growth and coalescence of discrete second-phase particles. A theoretical objection has been raised to this model—viz., that interparticle interference effects limit diffusion controlled growth and prevent coalescence. The present paper discusses three mechanisms whereby coalescence may occur despite interference effects. These include heterogeneous nucleation between two particles; capillarity-induced volume diffusion; and diffusion driven by the variation with separation of the interfacial energy of two interfaces. Two theories of the latter variation are presented, a diffuse interface theory based on the variational method of Cahn and Hilliard, and a pair interaction, sharp-interface model. Both models predict a monotonic decrease in the interfacial energy as the separation decreases. Other aspects of coalescence as well as the alternative model of spinodal decomposition are briefly discussed. The results of various experiments attempting to distinguish between spinodal decomposition and nucleation-growth-coalescence are reviewed. It is concluded that the operative mechanism for the formation of interconnected submicrostructures in nearly all glass systems remains to be established.
相分离中第二相粒子的聚并
Haller等人提出了玻璃中相互连接的亚微观结构的发展模型,该模型涉及离散的第二相粒子的成核、生长和聚并。对这个模型提出了一个理论上的反对意见。,粒子间的干涉效应限制了扩散控制生长,阻止了聚结。本文讨论了三种机制,即尽管存在干扰效应,但仍可能发生聚结。这包括两个粒子之间的非均相成核;毛细管诱导的体积扩散;扩散是由两个界面的界面能随分离的变化驱动的。提出了基于Cahn和Hilliard变分方法的扩散界面理论和对相互作用的尖锐界面模型。两种模型都预测界面能随着分离的减小而单调地减小。本文还简要讨论了聚结的其他方面以及独立分解的替代模型。各种实验的结果,试图区分独立分解和成核-生长-聚结。结论是,在几乎所有的玻璃体系中,相互连接的亚微观结构形成的作用机制仍有待建立。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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