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Harmonic Decomposition Analysis Of Contact Mechanics Of Bonded Layered Elastic Solids

机译:粘结层状弹性固体接触力学的谐波分解分析

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The paper presents an iterative method for obtaining footprint, pressure distribution, local deformation and sub-surface stress field for the contact between a rigid cylindrical indenter and an elastic flat substrate. The methodology is applicable for semi-infinite, as well as for thin or thick bonded elastic layered solids with high or low elastic moduli. All findings are in accord with the observed behaviour of hard wear resistant and soft solid lubricating coatings. It is shown that the decomposed contact pressure distribution into a series of harmonic waves induces sub-surface stress fields that decay into the depth of the solid according to their wavelengths. Consequently, conditions vis-a-vis fatigue spalling and adhesion performance may be predicted for given thickness of layered bonded elastic solids.
机译:本文提出了一种迭代方法,用于获得足迹,压力分布,局部变形和亚表面应力场,以使刚性圆柱状压头与弹性平坦基底接触。该方法适用于半无限,以及具有高或低弹性模量的薄或厚粘结弹性层状固体。所有发现均与所观察到的硬质耐磨和软固体润滑涂层的行为相符。结果表明,分解后的接触压力分布为一系列谐波,会引起次表面应力场,该应力场根据其波长衰减到固体深度。因此,对于层状粘合弹性固体的给定厚度,可以预测疲劳剥落和粘合性能的状况。

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