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Fractal Model For Thermal Contact Conductance

机译:热接触电导率的分形模型

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A random number model based on fractal geometry theory is developed to calculate the thermal contact conductance (TCC) of two rough surfaces in contact. This study is carried out by geometrical and mechanical investigations. The present study reveals that the fractal parameters D and G have important effects on TCC. The predictions by the proposed model are compared with existing experimental data, and good agreement is observed by fitting parameters D and G. The results show that the effect of the bulk resistance on TCC, which is often neglected in existing models, should not be neglected for the relatively larger G and D. The main advantage of this model is the randomization of roughness distributions on rough surfaces. The present results also show a better agreement with the practical situation than the results of other models. The proposed technique may have the potential in prediction of other phenomena such as friction, radiation, wear and lubrication on rough surfaces.
机译:建立了基于分形几何理论的随机数模型,以计算接触的两个粗糙表面的热接触电导(TCC)。这项研究是通过几何和力学研究进行的。本研究表明,分形参数D和G对TCC具有重要影响。将所提模型的预测结果与现有实验数据进行比较,并通过拟合参数D和G观察到了很好的一致性。结果表明,在现有模型中经常忽略的体电阻对TCC的影响不应忽略。对于相对较大的G和D。此模型的主要优点是使粗糙表面上的粗糙度分布随机化。与其他模型的结果相比,目前的结果还显示出与实际情况更好的一致性。所提出的技术可能具有预测其他现象的潜力,例如在粗糙表面上的摩擦,辐射,磨损和润滑。

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