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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: Continuum regime 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: Continuum regime gas conduction in the gap

机译:具有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:间隙中的连续体气体传导

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摘要

Analytical solutions are presented for the effective thermal conductivity of a continuous matrix composite with fully debonded spherical inclusions in single-point contact with the matrix. This situation represents the lower bound on the effect of partial debonding between the dispersed and the matrix phase on composite thermal conductivity. The heat transfer across the gap in the debonded regions is assumed to occur by gaseous conduction. Solutions for the temperature gradient parallel and perpendicular to the point of contact are considered. Numerical results for a sodaborosilicate glass matrix with spherical nickel inclusions and a range of values for the thermal conductivity k(gap) of the gas phase in the gap are presented. The effective composite thermal conductivity values for gradients imposed parallel and perpendicular to the point of contact were found to differ significantly depending on the magnitudes of the contact conductance and the thermal conductivity of the gas. When k(gap) approaches zero, the solution approaches that for a matrix with spherical pores presented by Maxwell. When k(gap) approaches infinity, the composite thermal conductivity approaches Maxwell's value for a composite with perfect interfacial thermal contact.
机译:提出了具有完全脱粘的球形夹杂物且与基体单点接触的连续基体复合材料的有效导热系数的解析解。这种情况代表了分散相和基体相之间部分脱粘对复合材料热导率的影响的下限。假设通过气态传导发生跨过未结合区域中的间隙的热传递。考虑平行和垂直于接触点的温度梯度的解。给出了具有球形镍夹杂物的钠硼硅酸盐玻璃基体的数值结果,以及间隙中气相的导热系数k(gap)的取值范围。发现平行于接触点和垂直于接触点施加的梯度的有效复合热导率值显着不同,这取决于接触电导的大小和气体的热导率。当k(gap)接近零时,该解接近Maxwell提出的具有球形孔的矩阵的解。当k(gap)接近无穷大时,复合材料的导热率接近具有完美界面热接触的复合材料的Maxwell值。

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