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Mechanisms of Slip Weakening and Healing in Glass at Co-Seismic Slip Rates

机译:玻璃防滑疲劳和愈合机制在共震滑动率

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The determination of co-seismic slip resistance in earth faults is critical for understanding the magnitude of shear stress reduction and hence the near-fault acceleration that can occur during earthquakes. Knowledge of shear resistance dependency on slip velocity, slip distance, normal stress, and surface roughness is fundamental information for understanding earthquake physics and the energy released during such events. In the present study plate-impact pressure-shear friction experiments were employed to investigate the frictional resistance in soda-lime glass at relevant normal pressures and co-seismic slip rates. Detailed atomic force microscopy (AFM) and scanning electron microscopy (SEM) studies were carried out to understand the microstructures formed during the sliding process. The results of the experiments indicate that a wide range of frictional slip conditions exist at the slip interface. These slip conditions range from no-slip followed by slip weakening, strengthening, and then seizure for the case of glass-on-glass experiments. The first-weakening (μ ~ 0.2) is most likely due to the thermal weakening induced by flash heating and incipient melting at asperity junctions, while the second-strengthening (μ ~ 0.4 to 1.0) is understood to be caused by coalescence and solidification of melt patches. These results can be used to provide an understanding of mechanisms during dynamic fault weakening, and also to establish the constitutive description for the slip behavior in geological materials that can be used in dynamic models of earthquake rupture.
机译:同震防滑性的接地故障的确定是用于理解可地震过程中发生的剪切应力降低的幅度,因此近断层加速度临界。上滑移速度剪切阻力依赖性,滑移距离,正应力,和表面粗糙度的知识对于理解地震物理和这种事件期间释放的能量基本信息。在本研究中板冲击被雇用压剪摩擦实验以研究在有关正常的压力和同震滑移率在钠钙玻璃的摩擦阻力。详述原子力显微镜(AFM)和扫描电子显微镜(SEM)研究,进行理解时的滑动过程所形成的微结构。该实验的结果表明,宽范围的摩擦滑动条件中的滑动界面上。这些滑移条件的范围从无滑移接着滑移弱化,加强,然后对癫痫发作的玻璃 - 玻璃上的实验的情况。第一弱化部(μ〜0.2)是最可能是由于通过在凹凸结急骤加热和初期熔化引起的热减弱,而第二强化(μ〜0.4〜1.0)被理解为通过聚结和固化引起融补丁。这些结果可以用来动态故障弱化期间提供的机制的理解,同时也建立在地质材料的滑移现象,可以在地震破裂的动态模型中使用的构描述。

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