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Improved analysis and visualization of friction loop data: unraveling the energy dissipation of meso-scale stick-slip motion

机译:改进了摩擦环路数据的分析和可视化:解开中间尺度粘滑运动的能量耗散

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In this paper we demonstrate a new method for analyzing and visualizing friction force measurements of meso-scale stick-slip motion, and introduce a method for extracting two separate dissipative energy components. Using a microelectromechanical system tribometer, we execute 2 million reciprocating sliding cycles, during which we measure the static friction force with a resolution of 0.6 nN and the displacement with a resolution of 0.2 nm. We plot the lateral force as a function of the real contact position by compensating for the values of the spring constants of the system. This allows all friction loops to be combined in a single hexagonal bin plot, which clearly shows the evolution of the friction force magnitude and its distribution across the sliding track. We identify all individual slip events in the entire experiment using a thresholding algorithm. This allows us to show the evolution of the slip event count, the static friction force, and the coefficient of friction. Crucially, it allows us to disentangle the dissipated energy into two components: the dynamically dissipated energy, which is associated with slip motions, and the semi-statically dissipated energy, which is related to small contact deformations, plastic yield and other non-elastic behavior. Our technique provides new insight into the mechanics of stick-slip motion in multi-asperity contact systems, and paves the way towards a better understanding of the physics of meso-scale friction.
机译:在本文中,我们证明了一种用于分析和可视化Meso-Scal-Slow-Slip运动的摩擦力测量的新方法,并引入提取两个独立的耗散能量分量的方法。使用微机电系统摩擦计,我们执行200万往复式滑动循环,在此期间,我们测量具有0.6 nn的分辨率和分辨率为0.2nm的分辨率的静摩擦力。通过补偿系统的弹簧常数的值,将横向力绘制为真实接触位置的函数。这允许在单个六边形箱图中组合所有摩擦环,这清楚地示出了摩擦力幅度的演变及其在滑动轨道上的分布。我们使用阈值算法识别整个实验中的所有单独的单独滑移事件。这使我们能够展示滑移事件计数,静态摩擦力和摩擦系数的演变。至关重要的是,它允许我们将散热的能量解开成两个组件:动态消散的能量,与滑动运动相关,以及半静态耗散能量,与小的接触变形,塑料产量和其他非弹性行为有关。我们的技术为多粗糙接触系统中的粘滑运动机制提供了新的洞察力,并铺平了更好地理解中间规模摩擦的物理学。

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