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Crack-like processes governing the onset of frictional slip

机译:像裂纹一样的过程控制着摩擦滑移的开始

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We perform real-time measurements of the net contact area between two blocks of like material at the onset of frictional slip. We show that the process of interface detachment, which immediately precedes the inception of frictional sliding, is governed by three different types of detachment fronts. These crack-like detachment fronts differ by both their propagation velocities and by the amount of net contact surface reduction caused by their passage. The most rapid fronts propagate at intersonic velocities but generate a negligible reduction in contact area across the interface. Sub-Rayleigh fronts are crack-like modes which propagate at velocities up to the Rayleigh wave speed, V_R, and give rise to an approximate 10 percent reduction in net contact area. The most efficient contact area reduction (approx 20 percent) is precipitated by the passage of 'slow detachment fronts'. These fronts propagate at 'anomalously' slow velocities, which are over an order of magnitude lower than V_R yet orders of magnitude higher than other characteristic velocity scales such as either slip or loading velocities. Slow fronts are generated, in conjunction with intersonic fronts, by the sudden arrest of sub-Rayleigh fronts. No overall sliding of the interface occurs until either of the slower two fronts traverses the entire interface, and motion at the leading edge of the interface is initiated. Slip at the trailing edge of the interface accompanies the motion of both the slow and sub-Rayleigh fronts. We might expect these modes to be important in both fault nucleation and earthquake dynamics.
机译:我们在摩擦滑移开始时对两个类似材料块之间的净接触面积进行实时测量。我们表明,界面分离的过程在摩擦滑动开始之前就受到了三种不同类型的分离前沿的支配。这些裂纹状的脱离锋面的传播速度和通过它们所导致的净接触面减少量都不同。最快速的前沿以声速传播,但在整个界面上的接触面积减小到可以忽略的程度。子瑞利峰是类似于裂纹的模式,它以高达瑞利波速度V_R的速度传播,并导致净接触面积减少大约10%。通过“慢速脱离锋面”,可以最有效地减少接触面积(约20%)。这些前沿以“异常”缓慢的速度传播,该速度比V_R低一个数量级,但比其他特征速度尺度(如滑移速度或加载速度)高几个数量级。缓慢的锋线与声速锋线一起通过子瑞利锋线的突然停止而产生。直到较慢的两个前沿中的任何一个都穿过整个界面,并且在界面的前沿开始运动之后,界面才会发生整体滑动。界面后缘的滑移会同时伴随慢速和副瑞利锋线的运动。我们可能希望这些模式在断层成核和地震动力学中都非常重要。

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