首页> 外文期刊>Journal of Composite Materials >Effective thermal conductivity of continuous matrix-spherical dispersed phase composite with single-point interfacial thermal contact: Free molecular gas conduction in the gap
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Effective thermal conductivity of continuous matrix-spherical dispersed phase composite with single-point interfacial thermal contact: Free molecular gas conduction in the gap

机译:单点界面热接触的连续基体-球形分散相复合材料的有效导热系数:间隙中的自由分子气体传导

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摘要

Analytical solutions are presented for the lower bound of the effective thermal conductivity of a continuous matrix composite for the limiting case of fully debonded spherical inclusions in single-point contact with the matrix, with heat conduction across the interfacial gap occurring by gaseous heat transfer in the free-molecular regime. Imposed temperature gradients parallel and perpendicular to the diameter through the point-of-contact are considered. The composite thermal conductivity in addition to the generally accepted variables identified in the literature at any given pressure is found to be a function of the accommodation coefficients of the surfaces of the interfacial gap, but independent of the width of the gap. When the accommodation coefficient of one of the surfaces approaches zero, the composite thermal conductivity approaches Maxwell's value for a matrix with spherical pores, regardless of the value of the contact conductance. Instantaneous closure of the gap results in a discontinuous increase in the composite thermal conductivity to the value predicted by Maxwell for perfect interfacial thermal contact or the one predicted by Hasselman and Johnson for finite values of the interfacial thermal conductance. Numerical results are presented for a sodaborosilicate glass with spherical nickel inclusions. The composite thermal conductivity for imposed temperature gradients parallel or perpendicular to the diameter through the point of contact is found to differ significantly depending on the values for the interfacial thermal contact conductance and accommodation coefficients.
机译:提出了解析解,说明了连续基体复合材料有效导热系数的下限,这种限制条件是在与基体单点接触的完全脱开球形夹杂物的极限情况下,通过气体中的气体传热发生跨界面间隙的热传导。自由分子机制。考虑通过接触点平行于和垂直于直径的温度梯度。发现在任何给定压力下,除了文献中确定的普遍接受的变量外,复合材料的导热系数还取决于界面间隙表面的调节系数,但与间隙宽度无关。当其中一个表面的容纳系数接近零时,对于具有球形孔的基质,复合热导率将接近Maxwell值,而与接触电导率的值无关。间隙的瞬时闭合导致复合材料导热系数的不连续增加,达到Maxwell预测的完美界面热接触值或Hasselman和Johnson预测的有限界面导热率值。给出了具有球形镍夹杂物的钠硼硅酸盐玻璃的数值结果。发现平行于或垂直于穿过接触点的直径所施加的温度梯度的复合热导率显着不同,这取决于界面热接触电导率和调节系数的值。

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