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ELASTIC DEFORMATION OF SURFACE ROUGHNESS IN THIN FILM HYDRODYNAMIC LUBRICATION

机译:薄膜流体动力润滑中表面粗糙度的弹性变形

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In the current study, the influence of elastic deformation in thin film hydrodynamic lubrication was numerically investigated. The one dimensional Reynolds equation was solved with considering the piezoviscosity effect of the lubricant and elastic deformation of the sliding surface in flat-flat contacts. The contact area comprised of a stationary rigid surface with sine waves with amplitude of several nano meters and a moving flat compliant surface. The obtained numerical results show that small amplitude of roughness compared with the averaged film thickness influences the pressure distribution of the hydrodynamic film. Reduction of the roughness and decay in wave of the roughness occurred because of the elastic deformation induced by local pressure generation.
机译:在目前的研究中,数值研究了在薄膜流体动力学润滑中的弹性变形的影响。考虑到润滑剂的压电性效果和平坦触点中的滑动表面的弹性变形,解决了一维雷诺等式。接触面积包括静止刚性表面,其具有幅度的正弦波,具有几个纳米仪表和移动的扁平柔顺表面。所得数值结果表明,与平均膜厚度相比,粗糙度小的振幅影响了流体动力膜的压力分布。由于局部压力产生诱导的弹性变形,发生粗糙度的粗糙度和衰减的衰减和衰减。

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