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首页> 外文期刊>IEEE Transactions on Components, Packaging, and Manufacturing Technology. Part A >On the effect of nonlinear boundary conditions for heat conduction in diamond heat spreaders with temperature-dependent thermal conductivity
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On the effect of nonlinear boundary conditions for heat conduction in diamond heat spreaders with temperature-dependent thermal conductivity

机译:在非线性边界条件的影响热传导与te钻石散热器mperature-dependent导热系数

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For steady-state heat conduction in diamond heat spreaders with temperature-dependent thermal conductivity, we examine the valid range of the commonly used approximate solution against a rigorous solution which we have recently formulated. The basic difference between our work and the approximate solution lies in the boundary condition (bc) of the transformed temperature over the spreader-sink interface-we use a nonlinear be whereas the bc in the approximate solution has been assumed to be linear. We point out that the valid range of the approximate solution is determined by the temperature difference above the ambient over the interface. The discrepancy between the two solutions becomes severe (10%) for devices of radius around 50 /spl mu/m involving high power dissipation (20 W).
机译:在钻石热稳态热传导与温度相关的热分离器导,我们检查的有效范围常用的近似解反对我们最近严格解制定。和近似解在边界条件(bc)的转化温度在spreader-sink界面使用非线性近似而公元前解决方案被认为是线性的。近似的有效范围解决方案是由温度决定的差异高于环境的接口。这两个解决方案之间的差异严重(& 10%)设备周围半径50/ splμm涉及高功率耗散

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