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Analysis of the Evolution of the Structure of a Surface With Pyramidal Asperities in Contact With a Hard and Smooth Plane

机译:与硬和光滑平面接触的具有金字塔形凹凸的表面结构的演化分析

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摘要

This research deals with the evolution of the structure of the sapphire-brass interface due to the variation of contact pressure. This evolution primarily affects the essential parameters that govern the thermal contact resistance (TCR), namely, the contact point density N, the ratio of real area of contact S*, and the distance d separating the median contact planes. The combination of three measurement techniques, namely, profilometry, imaging, and mechanical characterization, was used for the purpose of investigating the structural variation of the interface. Alternatively, the TCR, which prevails at the interface, was estimated. Thus, the object of our study is to propose an original and new experimental approach allowing at the same time the precise measurement of the TCR and the estimate of the contact parameters of the interface studied constituting input data to the theoretical models of TCR. The estimated values given by these last are then compared with those measured. Through this approach, we try to open new ways of experimentation that would tend to reinforce the effort of TCR modeling. The results obtained showed that the roughness parameters R_a and R_q are independent of loading. The roughness R_p, which is considered equal to d, is sensitive to loading and has the same decreasing behavior under the effect of loading. The determination of S*, using the hardness testing, is even more relevant when the effective hardness H_c is considered. Analysis of data for the estimation of the TCR shows that the comparisons with the reference model (Bardon) attest to the relevance of our approach.
机译:这项研究涉及由于接触压力的变化而引起的蓝宝石-黄铜界面结构的演变。这种演变主要影响控制热接触电阻(TCR)的基本参数,即接触点密度N,实际接触面积比S *和分隔中间接触面的距离d。为了研究界面的结构变化,使用了轮廓测量,成像和机械表征这三种测量技术的组合。备选地,估计在界面上占优势的TCR。因此,我们研究的目的是提出一种新颖的实验方法,同时允许对TCR的精确测量和对所研究界面的接触参数的估计,从而构成了TCR理论模型的输入数据。然后将这些最后给出的估计值与测得的值进行比较。通过这种方法,我们尝试开辟新的实验方法,这些方法可能会加强TCR建模的工作量。所得结果表明,粗糙度参数R_a和R_q与载荷无关。被认为等于d的粗糙度R_p对负载敏感,并且在负载作用下具有相同的减小行为。当考虑有效硬度H_c时,使用硬度测试确定S *更为重要。用于TCR估算的数据分析表明,与参考模型(Bardon)的比较证明了我们方法的相关性。

著录项

  • 来源
    《Journal of Heat Transfer》 |2020年第1期|011401.1-011401.10|共10页
  • 作者单位

    Smart Structures Laboratory (SSL) University Center of Ain Temouchent P.O. Box 284 Ain Temouchent 46000 Algeria;

    Thermokinetics Laboratory Polytechnic School of the University of Nantes Christian Pauc Street CS 50609 Nantes Cedex 3 44306 France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 05:24:05

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