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首页> 外文期刊>Journal of Tribology >A Theoretical Analysis of the Mixed Elastohydrodynamic Lubrication in Elliptical Contacts With an Arbitrary Entrainment Angle
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A Theoretical Analysis of the Mixed Elastohydrodynamic Lubrication in Elliptical Contacts With an Arbitrary Entrainment Angle

机译:具有任意夹角的椭圆形接触中的混合弹性流体动力润滑的理论分析

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摘要

Numerical simulations of the elastohydrodynamic lubrication (EHL) have been conducted by many researchers, in which the entrainment velocity is usually parallel to one of the axes of Hertzian contact ellipse. However, in some engineering applications, such as the counterformal contacts in spiral bevel and hypoid gears, entraining velocity vector may have an oblique angle that could possibly influence the lubrication characteristics significantly. Also, a vast majority of gears operate in mixed EHL mode in which the rough surface asperity contacts and lubricant films coexist. These gears are key elements widely used for transmitting significant power in various types of vehicles and engineering machinery. Therefore, model development for the mixed EHL in elliptical contacts with an arbitrary entrainment angle is of great importance. In the present paper, a recently developed mixed EHL model is modified to consider the effect of arbitrary entraining velocity angle, and the model is validated by comparing its results with available experimental data and previous numerical analyses found in literature. Based on this, numerical simulations are conducted to systematically study the influence of entrainment angle on lubricant film thickness in wide ranges of speed, load, and contact ellipticity. The obtained results cover the entire lubrication spectrum from thick-film and thin-film lubrication all the way down to mixed and boundary lubrication. In addition, minimum film thickness prediction formula is also developed through curve-fitting of the numerical results.
机译:弹性流体动力润滑(EHL)的数值模拟已经由许多研究人员进行,其中夹带速度通常平行于赫兹接触椭圆的轴之一。但是,在某些工程应用中,例如螺旋锥齿轮和准双曲面齿轮中的反形式接触,夹带速度矢量可能具有一个倾斜角,该倾斜角可能会显着影响润滑特性。另外,绝大多数齿轮以混合EHL模式运行,在该模式下,粗糙的粗糙表面接触并且润滑膜共存。这些齿轮是广泛用于在各种类型的车辆和工程机械中传输大量动力的关键元件。因此,对于具有任意夹带角的椭圆形接触中的混合EHL的模型开发非常重要。在本文中,修改了最近开发的混合EHL模型,以考虑任意夹带速度角的影响,并通过将其结果与可用的实验数据和文献中发现的先前数值分析进行比较,对该模型进行了验证。在此基础上,进行了数值模拟,系统地研究了夹角对速度,载荷和接触椭圆率在较大范围内对润滑膜厚度的影响。获得的结果涵盖了从厚膜润滑和薄膜润滑一直到混合润滑和边界润滑的整个润滑范围。此外,还通过数值结果的曲线拟合来开发最小膜厚预测公式。

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