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首页> 外文期刊>International Journal of Modern Nonlinear Theory and Application >Effect of Geometry of Filler Particles on the Effective Thermal Conductivity of Two-Phase Systems
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Effect of Geometry of Filler Particles on the Effective Thermal Conductivity of Two-Phase Systems

机译:填料颗粒的几何形状对两相系统有效导热系数的影响

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摘要

The present paper deals with the effect of geometry of filler particles on the effective thermal conductivity for polymer composites. In the earlier models, less emphasis has been given on the shape of filler particles. In this paper, expressions for effective thermal conductivity has been derived using the law of minimal thermal resistance and equal law of the specific equivalent thermal conductivity for three different shapes i.e. spherical, elliptical and hexagonal of filler particles respectively. Calculated values of effective thermal conductivity for various samples using the derived expressions then compared with experimental data available and other models developed in the literature. The results calculated are in good agreement with the earlier experimental data and the deviation, is least in our expressions showing the success of the model.
机译:本文探讨了填料颗粒的几何形状对聚合物复合材料有效导热率的影响。在较早的模型中,较少强调填料颗粒的形状。在本文中,对于三种不同的形状,即分别为球形,椭圆形和六边形的填料颗粒,使用最小热阻定律和比等效热导率相等的定律得出有效导热系数的表达式。然后使用推导的表达式计算出的各种样品的有效导热系数的值与现有的实验数据以及文献中开发的其他模型进行了比较。计算结果与早期实验数据和偏差非常吻合,至少在我们的表达式中显示了模型的成功。

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