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A new heat transfer model of inorganic particulate-filled polymer composites

机译:无机颗粒填充聚合物复合材料的新传热模型

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摘要

Thermal conductivity is an important parameter for characterization of thermal properties of materials. Various complicated factors affect the thermal conductivity of inorganic particulate-filled polymer composites. The heat transfer process and mechanisms in an inorganic particulate-filled polymer composite were analyzed in this article. A new theoretical model of heat transfer in these composites was established based on the law of minimal thermal resistance and the equal law of the specific equivalent thermal conductivity, and an relevant equation of effective thermal conductivity (K eff) for describing a relationship between K eff and filler volume fraction as well as other thermal parameters were derived based on this model. The values of K eff of aluminum powder-filled phenol–aldehyde composites and graphite powder-filled phenol–aldehyde composites were estimated by using this equation, and the calculations were compared with the experimental measured data from these composites with filler volume fraction from 0 to 50% in temperature range of 50–60 °C and the predictions by Maxwell–Eucken equation and Russell equation. The results showed that the predictions of the K eff by this equation were closer to the measured data of these composites than the other equations proposed in literature.
机译:导热系数是表征材料热性能的重要参数。各种复杂的因素影响无机颗粒填充的聚合物复合材料的热导率。本文分析了无机颗粒填充聚合物复合材料的传热过程和机理。基于最小热阻定律和比等效热导率的相等律,以及有效热导率的相关方程(K eff )建立了新的复合材料传热理论模型。为了描述K eff 与填料体积分数之间的关系,还基于该模型导出了其他热参数。利用该方程式估算了铝粉填充酚醛复合材料和石墨粉填充酚醛复合材料的K 值,并将计算结果与这些复合材料的实验测量数据进行了比较。在50–60°C的温度范围内,填料体积分数从0%到50%,并且通过Maxwell–Eucken方程和Russell方程进行预测。结果表明,与文献中提出的其他方程相比,该方程对K eff 的预测更接近于这些复合材料的实测数据。

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