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滑动过程中的柱面-平面接触力学

Cylinder-flat-surface contact mechanics during sliding.

作者信息

Wang J, Tiwari A, Persson B N J, Sivebaek I M

机构信息

PGI-1, FZ Jülich, Germany, European Union and College of Science, Zhongyuan University of Technology, Zhengzhou 450007, China.

PGI-1, FZ Jülich, Germany, European Union.

出版信息

Phys Rev E. 2020 Oct;102(4-1):043002. doi: 10.1103/PhysRevE.102.043002.

Abstract

Using molecular dynamics we study the dependency of the contact mechanics on the sliding speed when an elastic block (cylinder) with a cos(q_{0}x) surface height profile is sliding in adhesive contact on a rigid flat substrate. The atoms on the block interact with the substrate atoms by Lennard-Jones potentials, and we consider both commensurate and (nearly) incommensurate contacts. For the incommensurate system the friction force fluctuates between positive and negative values, with an amplitude proportional to the sliding speed, but with the average close to zero. For the commensurate system the (time-averaged) friction force is much larger and nearly velocity independent. For both types of systems the width of the contact region is velocity independent even when, for the commensurate case, the frictional shear stress increases from zero (before sliding) to ≈0.1MPa during sliding. This frictional shear stress, and the elastic modulus used, are typical for polydimethylsiloxane rubber sliding on a glass surface, and we conclude that the reduction in the contact area observed in some experiments when increasing the tangential force must be due to effects not included in our model study, such as viscoelasticity or elastic nonlinearity.

摘要

利用分子动力学,我们研究了一个具有cos(q₀x)表面高度轮廓的弹性块体(圆柱体)在刚性平面基底上发生粘附接触滑动时,接触力学对滑动速度的依赖性。块体上的原子通过 Lennard-Jones 势与基底原子相互作用,并且我们考虑了共格和(近)非共格接触。对于非共格系统,摩擦力在正值和负值之间波动,其振幅与滑动速度成正比,但平均值接近于零。对于共格系统,(时间平均)摩擦力要大得多且几乎与速度无关。对于这两种类型的系统,即使在共格情况下,摩擦剪应力在滑动过程中从零(滑动前)增加到≈0.1MPa,接触区域的宽度也与速度无关。这种摩擦剪应力以及所使用的弹性模量是聚二甲基硅氧烷橡胶在玻璃表面滑动时的典型值,并且我们得出结论,在一些实验中当增加切向力时观察到的接触面积减小一定是由于我们的模型研究中未包含的效应,如粘弹性或弹性非线性。

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