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Electromagnetic and mechanical control of slip: laboratory experiments with slider system

机译:滑移的电磁和机械控制:滑块系统的实验室实验

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Field and laboratory data reveal the possibility of a significant coupling of elastic and electromagnetic (EM) fields that affect (hamper or initiate) slip. In this work we try to prove experimentally the possibility of controlling the slip regime by relatively weak mechanical or EM impact, in the way it has been done in nonlinear dynamic experiments on the control of chaos. The experimental setup consisted of a system of two plates of roughly finished basalt, where a constant pulling force was applied to the upper (sliding) plate. In addition, the same plate was subjected to mechanical or electric periodic perturbations, which are much weaker when compared to the pulling force. Quite different regimes of slip were excited depending on the amplitude and the frequency of applied weak perturbations. The observed regimes of slip vary from perfect synchronization of slip events, recorded as acoustic emission bursts with the perturbing periodic mechanical or EM impact, to their complete desynchronization. We consider the obtained results as evidence that it is possible to control slip by the application of weak periodic perturbations. The phenomenon can be explained in terms of nonlinear dynamics and synchronization theory.
机译:现场和实验室数据表明,弹性场和电磁场(EM)可能会显着耦合,从而影响(阻碍或引发)滑移。在这项工作中,我们尝试通过实验来证明通过相对较弱的机械或EM冲击来控制滑移状态的可能性,方法是在非线性动态实验中对混沌的控制中进行控制。实验装置由一个由两块粗加工玄武岩板组成的系统组成,在该系统中,恒定的拉力被施加到上部(滑动)板上。另外,同一块板受到机械或电的周期性扰动,与拉力相比要弱得多。根据所施加的微扰的幅度和频率,可以激发出许多不同的滑动方式。所观察到的滑移状态从滑移事件的完美同步(记录为带有扰动的周期性机械或EM冲击的声发射突发)到其完全失步不等。我们认为获得的结果作为证据表明可以通过应用弱周期性扰动来控制滑移。这种现象可以用非线性动力学和同步理论来解释。

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