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首页> 外文期刊>Journal of the European Ceramic Society >Thermal conductivity of alumina inclusion/glass matrix composite materials: local and macroscopic scales
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Thermal conductivity of alumina inclusion/glass matrix composite materials: local and macroscopic scales

机译:氧化铝夹杂物/玻璃基复合材料的热导率:局部和宏观尺度

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摘要

The thermal conductivity of a two-phase material, based on a glass matrix containing mm sized spherical alumina inclusions, has been studied as a function of the alumina phase volume fraction. The glass matrix and the alumina phase were chosen with almost identical coefficients of thermal expansion to ensure good thermal contact at the interface between the two phases. The thermal conductivity of the alumina phase was determined by local measurements on the inclusions using the mirage technique. For the glass phase and the two-phase samples, the thermal conductivity values were evaluated with the laser flash technique and compared to predictions by analytical models. The Maxwell-Eucken model gives a close agreement to these experimental values for alumina volume fractions up to 55 percent. In fact, we show that for large mm sized alumina inclusions, Hasselman's correction for the interface thermal resistance is not necessaiy.
机译:已经研究了基于两相材料的热导率,该玻璃基包含mm尺寸的球形氧化铝夹杂物,它是氧化铝相体积分数的函数。选择具有几乎相同的热膨胀系数的玻璃基质和氧化铝相,以确保在两相之间的界面处具有良好的热接触。氧化铝相的热导率是通过使用幻影技术通过对夹杂物的局部测量来确定的。对于玻璃相和两相样品,使用激光闪光技术评估热导率值,并将其与分析模型的预测值进行比较。 Maxwell-Eucken模型与氧化铝体积分数高达55%的这些实验值非常吻合。实际上,我们表明,对于大尺寸的氧化铝夹杂物,无需对界面热阻进行哈氏校正。

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