State Key Laboratory of Tribology, Tsinghua University, Beijing 100084, China.
Sci Rep. 2016 Sep 19;6:33730. doi: 10.1038/srep33730.
Comprehension of stick-slip motion is very important for understanding tribological principles. The transition from creep-dominated to inertia-dominated stick-slip as the increase of sliding velocity has been described by researchers. However, the associated micro-contact behavior during this transition has not been fully disclosed yet. In this study, we investigated the stick-slip behaviors of two polymethyl methacrylate blocks actively modulated from the creep-dominated to inertia-dominated dynamics through a non-uniform loading along the interface by slightly tilting the angle of the two blocks. Increasing the tilt angle increases the critical transition velocity from creep-dominated to inertia-dominated stick-slip behaviors. Results from finite element simulation disclosed that a positive tilt angle led to a higher normal stress and a higher temperature on blocks at the opposite side of the crack initiating edge, which enhanced the creep of asperities during sliding friction. Acoustic emission (AE) during the stick-slip has also been measured, which is closely related to the different rupture modes regulated by the distribution of the ratio of shear to normal stress along the sliding interface. This study provided a more comprehensive understanding of the effect of tilted non-uniform loading on the local stress ratio, the local temperature, and the stick-slip behaviors.
理解黏滑运动对于理解摩擦学原理非常重要。研究人员已经描述了随着滑动速度的增加,从蠕动主导到惯性主导的黏滑的转变。然而,在这种转变过程中相关的微观接触行为尚未完全揭示。在这项研究中,我们通过稍微倾斜两个块体的角度,沿着界面对两个聚甲基丙烯酸甲酯块体进行非均匀加载,从而主动将其从蠕动主导转变为惯性主导动力学。增加倾斜角度会增加从蠕动主导到惯性主导的黏滑行为的临界转变速度。有限元模拟的结果表明,正倾斜角会导致裂纹起始边缘对面的块体上的正压力和温度升高,这会增强滑动摩擦过程中微凸体的蠕动。黏滑过程中的声发射(AE)也已被测量,这与沿滑动界面的剪切与正应力比值分布调节的不同破裂模式密切相关。这项研究提供了对倾斜非均匀加载对局部应力比、局部温度和黏滑行为的影响的更全面理解。