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摩擦界面的不稳定性:蠕变斑块、成核与破裂前沿。

Instabilities at frictional interfaces: creep patches, nucleation, and rupture fronts.

作者信息

Bar-Sinai Yohai, Spatschek Robert, Brener Efim A, Bouchbinder Eran

机构信息

Chemical Physics Department, Weizmann Institute of Science, Rehovot 76100, Israel.

Max-Planck-Institut für Eisenforschung GmbH, D-40237 Düsseldorf, Germany.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2013 Dec;88(6):060403. doi: 10.1103/PhysRevE.88.060403. Epub 2013 Dec 10.

Abstract

The strength and stability of frictional interfaces, ranging from tribological systems to earthquake faults, are intimately related to the underlying spatially extended dynamics. Here we provide a comprehensive theoretical account, both analytic and numeric, of spatiotemporal interfacial dynamics in a realistic rate-and-state friction model, featuring both velocity-weakening and velocity-strengthening behaviors. Slowly extending, loading-rate-dependent creep patches undergo a linear instability at a critical nucleation size, which is nearly independent of interfacial history, initial stress conditions, and velocity-strengthening friction. Nonlinear propagating rupture fronts-the outcome of instability-depend sensitively on the stress state and velocity-strengthening friction. Rupture fronts span a wide range of propagation velocities and are related to steady-state-front solutions.

摘要

从摩擦学系统到地震断层,摩擦界面的强度和稳定性与潜在的空间扩展动力学密切相关。在此,我们对一个现实的速率-状态摩擦模型中的时空界面动力学进行了全面的理论阐述,包括解析和数值方面,该模型具有速度弱化和速度强化行为。缓慢扩展的、与加载速率相关的蠕变斑块在临界成核尺寸处经历线性失稳,该临界尺寸几乎与界面历史、初始应力条件和速度强化摩擦无关。非线性传播的破裂前沿——失稳的结果——敏感地依赖于应力状态和速度强化摩擦。破裂前沿跨越广泛的传播速度范围,并且与稳态前沿解相关。

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