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润滑滑动摩擦:界面流体滑移和表面粗糙度的作用。

Lubricated sliding friction: Role of interfacial fluid slip and surface roughness.

作者信息

Rotella C, Persson B N J, Scaraggi M, Mangiagalli P

机构信息

Sanofi, 13, quai Jules Guesde, BP 14-94403, Vitry-sur-Seine Cedex, France.

PGI-1, FZ Jülich, Jülich, Germany.

出版信息

Eur Phys J E Soft Matter. 2020 Feb 10;43(2):9. doi: 10.1140/epje/i2020-11933-4.

Abstract

We derive approximate mean field equations for the fluid flow between elastic solids with randomly rough surfaces including interfacial fluid slip and shear thinning. We present numerical results for the fluid flow and friction factors for realistic systems, in particular, we consider the case of an elastic cylinder with random surface roughness in relative sliding contact with a flat rigid (low-energy) counter-surface. We present experimental data for the sliding friction between rubber stoppers and glass barrels lubricated with baked-on silicone oil. We find that the frictional shear stress acting in the rubber asperity contact regions is nearly velocity independent for velocities in the 10-1000μm/s range, and very small [Formula: see text] MPa, while for bare glass in silicone oil [Formula: see text] is much larger and velocity dependent.

摘要

我们推导了具有随机粗糙表面的弹性固体之间流体流动的近似平均场方程,其中包括界面流体滑移和剪切变稀。我们给出了实际系统中流体流动和摩擦系数的数值结果,特别是,我们考虑了具有随机表面粗糙度的弹性圆柱体与平坦刚性(低能量)相对表面相对滑动接触的情况。我们给出了用烘焙硅油润滑的橡胶塞和玻璃桶之间滑动摩擦的实验数据。我们发现,在橡胶粗糙接触区域中作用的摩擦剪应力对于10 - 1000μm/s范围内的速度几乎与速度无关,并且非常小[公式:见正文]MPa,而对于硅油中的裸玻璃,[公式:见正文]要大得多且与速度有关。

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