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Modelling of the influence of dihedral angle, volume fractions, particle size and coordination on the driving forces for sintering of dual phase systems

机译:二面角,体积分数,粒径和配位对双相系统烧结驱动力影响的建模

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摘要

The equilibrium shape of solid particles in an aggregate immersed in a liquid or in a gas results from the minimization of interface energy. A model is developed for expressing the dependence of the solid-solid and solid-second phase interface areas on the system parameters: phase Volume fractions, dihedral angle, particle size and coordination. The model aims at allowing quantitative assessment of the role of these parameters on the driving force for sintering. The representative Volume element is a cone of which the apex angle accounts for the average particle coordination. In order to comply with the uniformity of interface curvature, the solid-second phase interfaces are described using the mathematics of the Delaunay surfaces. The results are compared with the Solutions obtained by approximating the interface shape by the revolution of an arc of circle around the cone axis. This approximation does not involve a significant loss of precision.
机译:固体颗粒在浸没在液体或气体中的聚集体中的平衡形状是由界面能的最小化产生的。开发了一个模型来表达固-固相和固-第二相界面面积对系统参数的依赖性:相体积分数,二面角,粒径和配位。该模型旨在对这些参数在烧结驱动力上的作用进行定量评估。代表性的体积元素是一个圆锥体,其顶角代表平均粒子配位。为了符合界面曲率的均匀性,使用Delaunay曲面的数学描述了固相界面。将结果与通过围绕圆锥轴的圆弧旋转近似界面形状而获得的解进行比较。这种近似不会带来很大的精度损失。

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