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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Laboratory observations of transient frictional slip in rock-analog materials at co-seismic slip rates and rapid changes in normal stress
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Laboratory observations of transient frictional slip in rock-analog materials at co-seismic slip rates and rapid changes in normal stress

机译:岩石模拟材料在同震滑移率和法向应力快速变化下的瞬态摩擦滑移的实验室观察

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摘要

Knowledge of frictional (shear) resistance and its dependency on slip distance, slip velocity, normal stress, and surface roughness is fundamental information for understanding earthquake physics and the energy released during such events. In view of this, in the present study, plate-impact pressure-shear friction experiments are conducted to investigate the frictional resistance in a rock analog material, i.e. soda-lime glass, under interfacial conditions of relevance to fault rupture. The results of the experiments indicate that a wide range of frictional slip conditions exist at the slip interface ranging from initial no-slip and followed by slip weakening, slip strengthening (healing), and seizure all during a single slip event. The slip-weakening phase is understood to be most likely due to thermal-induced flash heating and incipient melting at asperity junctions, while the slip strengthening (slip-healing) phase is understood to be a result of coalescence and solidification of local melt patches on the slip interface. In addition, plate impact pressure-shear normal-stress change (drop) experiments are employed to probe the response of the slip interface due to sudden alterations in normal stress. In particular, the location (timing) of the stress drop is varied so as to investigate the behavior of the slip interface in its slip-weakening, slip-strengthening (healing) phase, or the seized phase, in response to sudden drop in normal stress. These experimental results provide a rich set of data to better understand the range of possible friction slip states that can be achieved and/or critically examine existing dynamic friction models for fault slip behavior.
机译:了解摩擦(剪切)阻力及其对滑移距离,滑移速度,法向应力和表面粗糙度的依赖性,是了解地震物理和此类事件期间释放的能量的基本信息。有鉴于此,在本研究中,进行了板撞击压力-剪切摩擦试验,以研究与断层破裂有关的界面条件下岩石模拟材料即钠钙玻璃的摩擦阻力。实验结果表明,在滑移界面处存在各种摩擦滑移条件,从最初的无滑移到随后的滑移弱化,滑移增强(修复)和咬合都发生在单个滑移事件中。据认为,滑移弱化阶段最有可能是由于热诱导的闪蒸加热和粗糙连接处的初期熔化,而滑移强化(滑移修复)阶段被认为是聚结和固化了局部熔体斑的结果。滑动界面。另外,采用板冲击压力-剪切法向应力变化(下降)实验来探测由于法向应力的突然变化而引起的滑动界面的响应。尤其是,应力下降的位置(时间)会发生变化,以便根据正常情况下的突然下降来研究滑移界面在其滑移减弱,滑移加强(修复)阶段或咬合阶段的行为强调。这些实验结果提供了丰富的数据集,以更好地理解可以实现的可能的摩擦滑移状态的范围和/或严格检查现有的动态摩擦模型的故障滑移行为。

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