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Transition Between Mixed Lubrication and Elastohydrodynamic Lubrication with Randomly Rough Surfaces

机译:随机粗糙表面的混合润滑与弹性流体动力润滑之间的过渡

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We are interested in understanding the effect of roughness on friction in mixed lubrication (ML) and elastohydrodynamic lubrication (EHL), notably in the case of realistic surfaces. Rolling-sliding experiments in piezoviscous base oil are conducted between rough steels obtained with different machining, polishing and coating processes in order to represent realistic surface conditions found typically in a car engine. The Reynolds number based on the maximum lubricant film thickness in our experiments is below R-e = 4 . 10(-3). Our experiments at moderate pressure (<1 GPa) and speeds (mm/s -> m/s) allow to reach EHL for all surface roughnesses which range from the nanometre up to the micron. These surfaces have a complex and multi-scale texture and require a statistical description. Using the most raw and simple filter on large topographic measurements, we correlate the most probable standard deviation of surfaces to friction during Stribeck experiments occuring both in ML and EHL without measurable wear. In order to predict the conditions leading to high friction in ML, we propose a friction-based definition of ML and describe the role played by pressure and roughness on the onset of ML.
机译:我们有兴趣了解粗糙度对混合润滑(ML)和弹性流体动力润滑(EHL)中的摩擦的影响,特别是在实际表面上。在以不同加工,抛光和涂覆工艺制得的粗钢之间,进行了压电粘稠油的滚动滑动实验,以表现出通常在汽车发动机中发现的真实表面状况。在我们的实验中,基于最大润滑剂膜厚度的雷诺数低于R-e = 4。 10(-3)。我们在中等压力(<1 GPa)和速度(mm / s-> m / s)下进行的实验允许从纳米到微米的所有表面粗糙度达到EHL。这些表面具有复杂的多尺度纹理,需要统计描述。在大型地形测量中使用最原始和最简单的过滤器,我们将在ML和EHL中发生的Stribeck实验中,表面的最大可能标准偏差与摩擦相关,而没有可测量的磨损。为了预测导致ML高摩擦的条件,我们提出了基于摩擦的ML定义,并描述了压力和粗糙度对ML发作的作用。

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