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Thermal conductivity of filled composite materials considering interactions between fillers

机译:考虑填料之间相互作用的填充复合材料的导热系数

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Adding high thermal conductive fillers to base materials has been recognized as an efficient way to increase the thermal conductivity of composites materials. The heat conductive path is formed by filler contacts, this is a key point. In this paper, the effects of filler contacts are investigated based on generalized model and isolated model. The results indicate that the thermal conductivity is always linearly increased with the sphere filler contents. However, for cube filler, when the volume content exceeds 10%, the growth of thermal conductivity is accelerated along with filler contents. The 10% filler content is the inflection point and percolation threshold for cube filler. It is much lower than previously reported. The effect of filler contacts is very small for sphere fillers. Meanwhile, the deviation of thermal conductivity between two-dimensional and three-dimensional model is also very small for sphere filler. The cube fillers have substantial effects on the consequently thermal conductivity than sphere fillers. A series of new three-dimensional generalized model are proposed by numerical method. The filler contacts are considered in this model, the deviation with the experiment tested is in an acceptable range at wide filler contents.
机译:向基材添加高导热填料已被认为是提高复合材料材料的导热率的有效方法。导热路径通过填充触点形成,这是一个关键点。本文基于广义模型和孤立模型研究了填充触点的影响。结果表明,通过球填充物内容物总是线性地增加导热率。然而,对于立方体填料,当体积含量超过10%时,热导率的生长随填料含量加速。 10%填料含量是立方体填料的拐点和渗透阈值。它远远低于先前报道的。填料触点的效果对于球填料非常小。同时,球体填料的二维和三维模型之间的导热系数的偏差也非常小。立方体填料对由球填料的导热率具有显着影响。通过数值方法提出了一系列新的三维广义模型。在该模型中考虑填充触点,测试的偏差在宽填料内容下的可接受范围内。

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