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Mode coupling instability mitigation in friction systems by means of nonlinear energy sinks: Numerical highlighting and local stability analysis

机译:通过非线性能量下沉的模式耦合摩擦系统中的不稳定缓解:数值突出和局部稳定性分析

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In this paper, we study the problem of passive control of friction-induced vibrations due to mode coupling instability in braking systems. To achieve that, the well-known two degrees of freedom Hultén’s model, which reproduces the typical dynamic behavior of friction systems, is coupled to two ungrounded nonlinear energy sinks (NES). The NES involves an essential cubic restoring force and a linear damping force. First, using numerical simulations it is shown that the suppression or the mitigation of the instability is possible and four steady-state responses are highlighted: complete suppression, mitigation through periodic response, mitigation through strongly modulated response, and no suppression of the mode coupling instability. Then the system is analyzed applying a complexification-averaging method and the resulting slow-flow is finally analyzed using geometric singular perturbation theory. This analysis allows us to explain the observed steady-state response regimes and predict some of them. The boundary values of the friction coefficient for some of the transitions between these regimes are predicted. However, the appearance of a three-dimensional super-slow flow subsystem highlights the limitation of the local linear stability analysis of the slow-flow to predict all these boundaries.
机译:在本文中,我们研究了制动系统中的模式耦合不稳定性导致的摩擦诱导振动的被动控制问题。为此,众所周知的两度自由化Hultén的模型,其再现摩擦系统的典型动态行为,耦合到两个未接地的非线性能量水槽(NES)。 NES涉及基本立方恢复力和线性阻尼力。首先,使用数值模拟,表明抑制或减轻不稳定性,并且突出了四个稳态响应:完全抑制,通过定期响应缓解,通过强烈调制的响应缓解,无抑制模式耦合不稳定。然后分析系统应用络合平均方法,并且最终使用几何奇异扰动理论分析所得到的慢流。该分析使我们能够解释观察到的稳态响应制度并预测它们中的一些。预测了这些制度之间的一些转变的摩擦系数的边界值。然而,三维超慢流子系统的外观突出了慢流的局部线性稳定性分析的限制来预测所有这些边界。

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