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Hydrodynamic lubrication of textured surfaces: A review of modeling techniques and key findings

机译:纹理表面的流体动力润滑:建模技术和主要发现的回顾

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摘要

Understanding the influence of surface properties (roughness, grooves, discrete textures/dimples) on the performance of hydrodynamically lubricated contacts has been the aim of numerous studies. A variety of different numerical models have been employed by many researchers in order to find optimal texturing parameters (shape, size, distribution) for best performance enhancement in terms of load carrying capacity, film thickness, friction and wear. However, the large number of different modeling techniques and complexity in the patterns make finding the optimum texture a challenging task and have led to contrary conclusions. This article outlines the research effort on surface texturing worldwide, reviews the key findings and, in particular, provides a comparative summary of different modeling techniques for fluid flow, cavitation and micro-hydrodynamic effects. (C) 2015 The Authors. Published by Elsevier Ltd.
机译:了解表面性质(粗糙度,沟槽,离散的纹理/凹痕)对流体动力润滑接触件性能的影响已成为众多研究的目标。许多研究人员已经采用了各种不同的数值模型,以找到最佳的纹理化参数(形状,尺寸,分布),从而在承载能力,薄膜厚度,摩擦和磨损方面实现最佳性能增强。但是,大量不同的建模技术和图案的复杂性使找到最佳纹理成为一项艰巨的任务,并得出了相反的结论。本文概述了全球范围内表面纹理化的研究工作,回顾了主要发现,尤其提供了流体流动,空化和微流体动力效应的不同建模技术的比较摘要。 (C)2015作者。由Elsevier Ltd.发布

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