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Effect of Shear Loading Perturbation on Frictional Behavior: an Experimental Study
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摘要

///In this paper, the authors performed a series of frictional experiments using a servo-controlled biaxial loading machine with three granodiorite block direct shear configuration. In the experiments, a small-amplitude sine wave of displacement is modulated to shear loading to study the effects of shear stress perturbation on stick-slip instability. The main results are as follows: under constant normal stress and constant loading point velocity in shear direction, the sample shows regular stick-slip behavior. After the displacement perturbation is modulated to shear loading, the correlation between the timing of stick-slip and the perturbation increases as the perturbation amplitude increases. Stress drop and interval time of stick-slip events also tend to be scattered, and the critical amplitude for producing significant impact is around 0.05 MPa. The results imply that the change in Coulomb shear stress caused by strong earthquake may obviously change not only the occurrence time of earthquakes but also the earthquake magnitude on nearby faults.

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