The sintering of two particles by surface and grain boundary diffusion—a two-dimensional numerical study

W. Zhang, J.H. Schneibel
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引用次数: 111

Abstract

We investigate the sintering of two touching circular particles by surface and grain boundary diffusion. Typical examples for the evolution of the shape of the particles, their surface curvatures, and their surface fluxes are given. The sintering kinetics are evaluated as a function of the dihedral angle at the grain boundary-surface junctions and the grain boundary to surface diffusivity ratio. In particular, the growth rates of the neck between the two particles, the growth rate exponents, and the changes in the lengths of the particle pairs are monitored. The times needed to reach certain fractions of the final equilibrium neck sizes are tabulated for typical experimental dihedral angles and diffusivity ratios. Our simulation is based on a rigorous mathematical system modeling the sintering of the two particles, and a rigorous numerical method for solving this system is adopted.

两颗粒表面和晶界扩散烧结的二维数值研究
通过表面扩散和晶界扩散研究了两个接触圆形颗粒的烧结过程。给出了粒子形状、表面曲率和表面通量演变的典型例子。烧结动力学被评价为晶界-表面结合处的二面角和晶界-表面扩散比的函数。特别地,监测了两个粒子之间颈部的生长速率、生长速率指数和粒子对长度的变化。为典型的实验二面角和扩散比,列出了达到最终平衡颈尺寸的某些分数所需的时间。我们的模拟是基于一个严格的数学系统来模拟两种颗粒的烧结,并采用严格的数值方法来求解该系统。
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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