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Thermal Diffusivity and Thermal Conductivity of Dispersed Glass Sphere Composites Over a Range of Volume Fractions

机译:分散玻璃球形复合材料在一系列体积分数上的热扩散和导热率

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摘要

Glass spheres are often used as filler materials for composites. Comparatively few articles in the literature have been devoted to the measurement or modelling of thermal properties of composites containing glass spheres, and there does not appear to be any reported data on the measurement of thermal diffusivities over a range of filler volume fractions. In this study, the thermal diffusivities of guar-gel/glass sphere composites were measured using a transient comparative method. The addition of the glass beads to the gel increased the thermal diffusivity of the composite, more than doubling the thermal diffusivity of the composite relative to the diffusivity of the gel at the maximum glass volume fraction of approximately 0.57. Thermal conductivities of the composites were derived from the thermal diffusivity measurements, measured densities and estimated specific heat capacities of the composites. Two approaches to modelling the effective thermal diffusivity were considered.
机译:玻璃球通常用作复合材料的填充材料。 相对较少的文献中的文章已经致力于含有玻璃球的复合材料的热性质的测量或建模,并且在一系列填料体积分数上似乎没有关于测量热扩散性的任何报告的数据。 在该研究中,使用瞬态对比法测量瓜尔凝胶/玻璃球复合材料的热扩散性。 向凝胶中加入玻璃珠子增加了复合材料的热扩散率,而在最大玻璃体积分数约为约0.57的最大玻璃体积分数的凝胶的漫射率增加了复合材料的热扩散率。 复合材料的热导率来自热漫射测量,测量的密度和复合材料的估计的特定热容。 考虑了建模有效热扩散率的两种方法。

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