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Frequency-energy plots of steady-state solutions for forced and damped systems, and vibration isolation by nonlinear mode localization

机译:强迫和阻尼系统稳态解的频率能量图,以及通过非线性模式定位的振动隔离

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We study the structure of the periodic steady-state solutions of forced and damped strongly nonlinear coupled oscillators in the frequency-energy domain by constructing forced and damped frequency - energy plots (FEPs). Specifically, we analyze the steady periodic responses of a two degree-of-freedom system consisting of a grounded forced linear damped oscillator weakly coupled to a strongly nonlinear attachment under condition of 1:1 resonance. By performing complexification/averaging analysis we develop analytical approximations for strongly nonlinear steady-state responses. As an application, we examine vibration isolation of a harmonically forced linear oscillator by transferring and confining the steady-state vibration energy to the weakly coupled strongly nonlinear attachment, thereby drastically reducing its steady-state response. By comparing the nonlinear steady-state response of the linear oscillator to its corresponding frequency response function in the absence of a nonlinear attachment we demonstrate the efficacy of drastic vibration reduction through steady-state nonlinear targeted energy transfer. Hence, our study has practical implications for the effective passive vibration isolation of forced oscillators.
机译:通过构造强迫和阻尼频率-能量图(FEP),我们研究了频率-能量域中强迫和阻尼的强非线性耦合振荡器的周期稳态解的结构。具体来说,我们分析了一个两自由度系统的稳态周期响应,该系统由在1:1共振条件下弱耦合到强非线性附件的接地强迫线性阻尼振荡器组成。通过执行复杂化/平均分析,我们为强非线性稳态响应开发了解析近似。作为一种应用,我们通过将稳态振动能量转移并限制在弱耦合强非线性附件中,从而极大地降低了其稳态响应,来研究谐波强制线性振荡器的振动隔离。通过比较在没有非线性附件的情况下线性振荡器的非线性稳态响应与其对应的频率响应函数,我们证明了通过稳态非线性目标能量转移来大幅度降低振动的功效。因此,我们的研究对强制振荡器的有效被动隔振具有实际意义。

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