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Stability of quasi-static slip in a single degree of freedom elastic system with rate and state dependent friction

机译:具有速率和状态相关摩擦的单自由度弹性系统中准静态滑移的稳定性

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The stability of quasi-static trictional slip of a single degree of freedom elastic system is studied for a Dieterich--Ruina rate and state dependent friction law. showing steady-state velocity weakening, and fo1lowing the ageing (or slowness) version of the state evolution law. Previous studies have been done for the slip version. Analytically determined phase plane trajectories and Liapunov function methods are used in this work. The stability results have an extremely simple form : (l) When a constant velocity is imposed at the load point, slip motion is always periodic when the elastic stiffness, K. has a critical value, Kcr Slip is always stable when K > Kcr > 0, with rate approaching the load-point velocity. and unstable (slip rates within the quasi--static model become unbounded) when K < Kcr This is unlike results based on the slip version of the state evolution law, in which instability occurs in response to sufficiently large perturbations from steady sliding when K > Kcr An implication of this result for slip instabilities in continuum systems is that a critical nucleation size of coherent slip has to be attained before unstable slip can ensue. (2) When the load point is stationary, the system stable evolves towards slip at a monotonically decreasing rate whenever K ≥ Kcr ≥ 0. However, when K < Kcr, initial conditions leading to stable and unstable slip motion exist. Hence self driven creep modes of instability exist, but only in the latter case.
机译:针对Dieterich-Ruina速率和状态相关的摩擦定律研究了单自由度弹性系统的准静态摩擦滑动的稳定性。表现出稳态速度减弱,并降低了状态演化定律的老化(或慢度)版本。以前的研究已经完成了对滑版本。在这项工作中使用了解析确定的相平面轨迹和Liapunov函数方法。稳定性结果具有非常简单的形式:(l)当在载荷点处施加恒定速度时,当弹性刚度K为临界值时,滑移运动总是周期性的,当K> Kcr>时,滑移始终稳定。 0,速率接近负载点速度。 K Kcr该结果对连续系统中的滑移不稳定性的暗示是,必须先达到相干滑移的临界成核尺寸,然后才能确保产生不稳定的滑移。 (2)当负载点固定时,只要K≥Kcr≥0,系统稳定就会以单调递减的速度向滑移发展。但是,当K

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