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Impulsive periodic and quasi-periodic orbits of coupled oscillators with essential stiffness nonlinearity

机译:具有基本刚度非线性的耦合振荡器的脉冲周期和准周期轨道

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We study the impulsive responses of a grounded linear oscillator coupled to a light nonlinear attachment through an essentially nonlinear (nonlinearizable) stiffness. We analyze the periodic and quasi-periodic dynamics of the undamped system forced by a single impulse on the linear oscillator and being initially at rest, by considering separately low-, moderate-and high-energy impulsive motions. The motivation for studying the impulsive dynamics of this system centers on passive targeted energy transfer properties of the corresponding weakly damped one, that is, of the possibility of one-way, irreversible transfer of energy from the linear oscillator to the nonlinear attachment. A rather surprising aspect of this work is the complexity of the analysis required to study the impulsive dynamics of this system, due to its high degeneracy, as it undergoes a co-dimension three bifurcation.
机译:我们研究了通过基本非线性(不可线性化)刚度耦合到轻型非线性附件的接地线性振荡器的脉冲响应。通过分别考虑低,中和高能量的脉冲运动,我们分析了由线性振荡器上的单个脉冲强迫且最初处于静止状态的无阻尼系统的周期和准周期动力学。研究该系统的脉冲动力学的动机集中在相应的弱阻尼对象的无源目标能量传递特性上,即,有可能将能量从线性振荡器单向不可逆地传递到非线性附件。这项工作的一个相当令人惊讶的方面是,由于该系统的高退化性,因为它经历了一个三维三维分叉,因此研究该系统的脉冲动力学所需的分析复杂性。

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