Yan Caishan, Chen Hsuan-Yi, Lai Pik-Yin, Tong Penger
Department of Physics, Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong.
Department of Physics and Center for Complex Systems, National Central University, Taoyuan City, 320, Taiwan.
Nat Commun. 2023 Oct 5;14(1):6221. doi: 10.1038/s41467-023-41850-1.
Friction between two rough solid surfaces often involves local stick-slip events occurring at different locations of the contact interface. If the apparent contact area is large, multiple local slips may take place simultaneously and the total frictional force is a sum of the pinning forces imposed by many asperities on the interface. Here, we report a systematic study of stick-slip friction over a mesoscale contact area using a hanging-beam lateral atomic-force-microscope, which is capable of resolving frictional force fluctuations generated by individual slip events and measuring their statistical properties at the single-slip resolution. The measured probability density functions (PDFs) of the slip length δx, the maximal force F needed to trigger the local slips, and the local force gradient [Formula: see text] of the asperity-induced pinning force field provide a comprehensive statistical description of stick-slip friction that is often associated with the avalanche dynamics at a critical state. In particular, the measured PDF of δx obeys a power law distribution and the power-law exponent is explained by a new theoretical model for the under-damped spring-block motion under a Brownian-correlated pinning force field. This model provides a long-sought physical mechanism for the avalanche dynamics in stick-slip friction at mesoscale.
两个粗糙固体表面之间的摩擦通常涉及在接触界面的不同位置发生的局部粘滑事件。如果表观接触面积很大,可能会同时发生多个局部滑动,并且总摩擦力是界面上许多粗糙体施加的钉扎力之和。在这里,我们报告了一项使用悬臂梁横向原子力显微镜对中尺度接触面积上的粘滑摩擦进行的系统研究,该显微镜能够分辨由单个滑动事件产生的摩擦力波动,并在单滑动分辨率下测量其统计特性。测量得到的滑动长度δx的概率密度函数(PDF)、触发局部滑动所需的最大力F以及粗糙体诱导的钉扎力场的局部力梯度[公式:见原文],提供了对粘滑摩擦的全面统计描述,这种摩擦通常与临界状态下的雪崩动力学相关。特别是,测量得到的δx的PDF服从幂律分布,并且幂律指数由一个新的理论模型解释,该模型用于描述在布朗相关钉扎力场下欠阻尼弹簧块运动。这个模型为中尺度粘滑摩擦中的雪崩动力学提供了长期寻求的物理机制。