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软物质动力学:滑动过程中流体加速挤出

Soft matter dynamics: Accelerated fluid squeeze-out during slip.

作者信息

Hutt W, Persson B N J

机构信息

Pfisterer Kontaktsysteme GmbH, Rosenstraße 44, 73650 Winterbach, Germany.

PGI-1, FZ Jülich, Germany.

出版信息

J Chem Phys. 2016 Mar 28;144(12):124903. doi: 10.1063/1.4944384.

Abstract

Using a Leonardo da Vinci experimental setup (constant driving force), we study the dependency of lubricated rubber friction on the time of stationary contact and on the sliding distance. We slide rectangular rubber blocks on smooth polymer surfaces lubricated by glycerol or by a grease. We observe a remarkable effect: during stationary contact the lubricant is only very slowly removed from the rubber-polymer interface, while during slip it is very rapidly removed resulting (for the grease lubricated surface) in complete stop of motion after a short time period, corresponding to a slip distance typically of order only a few times the length of the rubber block in the sliding direction. For an elastically stiff material, poly(methyl methacrylate), we observe the opposite effect: the sliding speed increases with time (acceleration), and the lubricant film thickness appears to increase. We propose an explanation for the observed effect based on transient elastohydrodynamics, which may be relevant also for other soft contacts.

摘要

使用达芬奇实验装置(恒定驱动力),我们研究了润滑橡胶摩擦对静止接触时间和滑动距离的依赖性。我们在由甘油或润滑脂润滑的光滑聚合物表面上滑动矩形橡胶块。我们观察到一个显著的效果:在静止接触期间,润滑剂从橡胶 - 聚合物界面去除的速度非常缓慢,而在滑动期间,润滑剂被非常快速地去除(对于润滑脂润滑的表面),导致在短时间后运动完全停止,对应的滑动距离通常仅为橡胶块在滑动方向上长度的几倍。对于弹性坚硬的材料聚甲基丙烯酸甲酯,我们观察到相反的效果:滑动速度随时间增加(加速),并且润滑膜厚度似乎增加。我们基于瞬态弹性流体动力学对观察到的效果提出了一种解释,这可能对其他软接触也有相关性。

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