首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Coefficient of friction in mixed film lubrication: gears versus twin-discs
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Coefficient of friction in mixed film lubrication: gears versus twin-discs

机译:混合膜润滑中的摩擦系数:齿轮与双盘

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摘要

This work compares the friction between two contacting discs with the friction between gear teeth, using a mixed film lubrication model developed for the evaluation of contact pressure and shear stress fields [5]. Such model is used to analyse twin-disc contacts with smooth surfaces and gear teeth contacts with rough surfaces, both lubricated with an additive-free ISO VG 150 mineral oil. Experimental lubricant traction curves [4], measured in a twin-disc machine under full film elastohydrodynamic (EHD) lubrication (∧ > 2), were used to evaluate the lubricant rheological parameters, taking into account the surface roughness of the contacting discs. Experimental power loss measurements, made during gear efficiency tests performed in a Forschungsstelle fur Zahnrader und Getriebebau (FZG) test rig [4], were used to evaluate the average friction coefficient between gear teeth along the meshing line, considering the surface roughness of the tooth flanks. The experimental friction coefficients between gear teeth were compared with predictions obtained using three different approaches: (a) values directly extrapolated from the experimental lubricant traction curves, (b) values calculated using a full film EHD lubrication model, considering surface roughness, and (c) values from a mixed film lubrication model. These analysis were performed at three different scales, from the roughness peaks (inside contact) to the entire gear meshing line, passing through the contact dimension. The results obtained show that the mixed film lubrication model is able to evaluate accurately the friction between gear teeth in power transmission equipment whatever the lubrication regime, boundary, mixed or full film.
机译:这项工作使用为评估接触压力和剪切应力场而开发的混合膜润滑模型,将两个接触盘之间的摩擦与齿轮齿之间的摩擦进行了比较[5]。该模型用于分析光滑表面的双盘接触和粗糙表面的齿轮接触,均使用无添加剂的ISO VG 150矿物油润滑。考虑到接触盘的表面粗糙度,在全膜弹性流体动力学(EHD)润滑下(∧> 2)在双盘机器中测量的实验性润滑剂牵引曲线[4]用于评估润滑剂的流变参数。在Forschungsstelle皮草Zahnrader和Getriebebau(FZG)测试台[4]中进行的齿轮效率测试期间进行的实验功率损耗测量,用于评估沿啮合线的齿轮齿之间的平均摩擦系数,同时考虑了齿的表面粗糙度侧面。将齿轮齿之间的实验摩擦系数与使用三种不同方法获得的预测值进行了比较:(a)从实验润滑剂牵引曲线直接推断出的值;(b)使用全膜EHD润滑模型(考虑到表面粗糙度)计算出的值;以及(c )来自混合膜润滑模型的值。从粗糙度峰(内部接触)到整个齿轮啮合线,通过接触尺寸,以三种不同的比例进行了这些分析。所得结果表明,无论润滑方式,边界,混合或全膜润滑,混合膜润滑模型都能准确评估动力传动设备齿轮齿之间的摩擦。

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