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界面结合的摩擦老化与速率和状态摩擦的起源。

Frictional ageing from interfacial bonding and the origins of rate and state friction.

机构信息

Department of Mechanical Engineering and Applied Mechanics, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.

出版信息

Nature. 2011 Nov 30;480(7376):233-6. doi: 10.1038/nature10589.

Abstract

Earthquakes have long been recognized as being the result of stick-slip frictional instabilities. Over the past few decades, laboratory studies of rock friction have elucidated many aspects of tectonic fault zone processes and earthquake phenomena. Typically, the static friction of rocks grows logarithmically with time when they are held in stationary contact, but the mechanism responsible for this strengthening is not understood. This time-dependent increase of frictional strength, or frictional ageing, is one manifestation of the 'evolution effect' in rate and state friction theory. A prevailing view is that the time dependence of rock friction results from increases in contact area caused by creep of contacting asperities. Here we present the results of atomic force microscopy experiments that instead show that frictional ageing arises from the formation of interfacial chemical bonds, and the large magnitude of ageing at the nanometre scale is quantitatively consistent with what is required to explain observations in macroscopic rock friction experiments. The relative magnitude of the evolution effect compared with that of the 'direct effect'--the dependence of friction on instantaneous changes in slip velocity--determine whether unstable slip, leading to earthquakes, is possible. Understanding the mechanism underlying the evolution effect would enable us to formulate physically based frictional constitutive laws, rather than the current empirically based 'laws', allowing more confident extrapolation to natural faults.

摘要

地震长期以来被认为是由黏滑摩擦失稳引起的。在过去的几十年中,岩石摩擦的实验室研究阐明了构造断层带过程和地震现象的许多方面。通常,当岩石保持静止接触时,其静态摩擦力随时间呈对数增长,但导致这种增强的机制尚不清楚。这种摩擦强度的时变增加,即摩擦老化,是速率和状态摩擦理论中“演化效应”的一种表现。一种流行的观点认为,岩石摩擦的时间依赖性是由接触凸起的蠕变引起的接触面积增加所致。在这里,我们展示了原子力显微镜实验的结果,这些结果表明摩擦老化是由界面化学键的形成引起的,而在纳米尺度上的老化幅度很大,与解释宏观岩石摩擦实验中观察结果所需的幅度在数量上是一致的。演化效应与“直接效应”(摩擦对滑动速度瞬时变化的依赖性)的相对大小决定了是否可能发生导致地震的不稳定滑动。理解演化效应的机制将使我们能够制定基于物理的摩擦本构定律,而不是目前基于经验的“定律”,从而能够更有信心地将其外推到自然断层。

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