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首页> 外文期刊>Tribology Transactions >A Limiting Solution for the Dependence of Film Thickness on Velocity in EHL Contacts with Very Thin Films
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A Limiting Solution for the Dependence of Film Thickness on Velocity in EHL Contacts with Very Thin Films

机译:EHL接触极薄薄膜时薄膜厚度对速度的依赖的一种极限解决方案

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In recent years there have been substantial improvements in the capabilities of numerical modeling of elastohydrodynamic lubricant (EHL) films and it is now possible to analyze a very wide range of conditions rather than needing to rely on extrapolation using classical film thickness regression equations such as those of Dowson and Higginson. However, a new controversy has arisen concerning the film thickness-velocity dependence in EHL contacts at very low speeds and high loads, with some predictions showing a film thickness much less than that predicted by the classical equations. The present article applies the well-established limiting analysis, first presented by Grubin-Ertel, to the inlet of the EHL contact. It is shown that when the load is high and the speed is low (and the pressure gradient is very high in the inlet) an accurate resolution of the inlet pressure rise is critical for the determination of the film thickness. Discretization errors of this type might be responsible for discrepancies between the classical equations and some recently published numerical predictions.
机译:近年来,弹性流体动力润滑剂(EHL)薄膜的数值建模能力有了实质性的提高,现在可以分析非常广泛的条件,而无需依靠经典的薄膜厚度回归方程(例如那些道森和希金森然而,关于在非常低的速度和高负荷下的EHL接触中膜厚度-速度依赖性的问题引起了新的争议,一些预测表明膜厚度比经典方程式预测的要小得多。本文将由Grubin-Ertel首先提出的公认的极限分析应用于EHL触点的入口。结果表明,当负载较高而速度较低(并且入口中的压力梯度非常高)时,入口压力上升的准确分辨率对于确定膜厚至关重要。这种类型的离散化误差可能是经典方程式和最近发布的一些数值预测之间的差异造成的。

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