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Thermal contact conductance of pressed contacts at low temperatures

机译:低温下压触头的热接触电导

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摘要

The influence of variations of interface temperature in the range 50-300 K on the thermal contact conductance between aluminium and stainless steel joints was determined. Predictions were done by modeling the deformation at the interface for different values of surface finish and contact pressure over the range of interface temperatures. Both elastic and plastic deformation was considered. Experiments were carried out in a closed loop cryostat and the results were shown to compare well with the predictions. A reduction of the interface temperature resulted in a smaller value of thermal contact conductance. Interfacial pressure variation had much lower influence at the smaller value of temperatures. The role of surface roughness at the contact was also seen to be less significant at lower interface temperatures and the zone of hysteresis was smaller. A correlation was developed for estimating thermal contact conductance at joints over this temperature range. An explicit dependence of contact conductance on temperature was not seen to be necessary as long as the changes in the hardness and thermal conductivity of the material with temperature are incorporated in the correlation.
机译:确定了界面温度在50-300 K范围内变化对铝和不锈钢接头之间的热接触电导的影响。通过对界面温度范围内不同表面光洁度和接触压力值的界面变形建模来进行预测。考虑了弹性变形和塑性变形。实验是在闭环低温恒温器中进行的,结果显示出与预测值的良好对比。界面温度的降低导致较小的热接触电导值。在较小的温度值下,界面压力变化的影响较小。在较低的界面温度下,接触处表面粗糙度的作用也不太明显,并且滞后区较小。建立了相关性以估计在该温度范围内接头处的热接触电导。只要将材料的硬度和热导率随温度的变化纳入相关关系,就不必认为接触电导率对温度有明确的依赖性。

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