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首页> 外文期刊>Journal of Vibration and Acoustics >Dynamics of Cubic and Vibro-Impact Nonlinear Energy Sink: Analytical, Numerical, and Experimental Analysis
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Dynamics of Cubic and Vibro-Impact Nonlinear Energy Sink: Analytical, Numerical, and Experimental Analysis

机译:立方和振动冲击非线性能量汇的动力学:分析,数值和实验分析

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摘要

This paper is devoted to study and compare dynamics of primary linear oscillator (LO) coupled to cubic and vibro-impact (VI) nonlinear energy sink (NES) under transient and periodic forcing. The classic analytical procedure combining the approach of invariant manifold and multiple scales is extended from the analysis of steady-state resonance to other regimes, especially strongly modulated response (SMR). A general equation governing the variation of motion along the slow invariant manifold (SIM) is obtained. Numerical results show its convenience to explain the transition from steady-state response to SMR and the characteristics of SMR for periodic forcing. Targeted energy transfer (TET) under transient forcing can also be well understood. Experimental results from LO coupled to VI NES under periodic forcing confirm the existence of SMR and its properties (e.g., chaotic). They also verify the feasibility of the general equation to explain complicated case like SMR in experiments.
机译:本文致力于研究和比较在瞬态和周期性强迫下耦合到立方和振动冲击(VI)非线性能量宿(NES)的主线性振荡器(LO)的动力学。结合不变流形和多尺度方法的经典分析程序已从稳态共振分析扩展到其他方案,尤其是强调制响应(SMR)。获得控制沿着缓慢不变歧管(SIM)的运动变化的一般方程。数值结果表明,它方便地解释了从稳态响应到SMR的过渡以及SMR用于周期性强迫的特性。也可以很好地理解瞬态强迫下的目标能量转移(TET)。 LO在周期性强迫下耦合到VI NES的实验结果证实了SMR的存在及其特性(例如混沌)。他们还验证了通用方程式在实验中解释SMR等复杂情况的可行性。

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  • 来源
    《Journal of Vibration and Acoustics》 |2016年第3期|031010.1-031010.9|共9页
  • 作者单位

    ICA (Institut Clement Ader), CNRS, INSA, ISAE, UPS, Mines Albi, Universite de Toulouse, 3 rue Caroline Aigle, Toulouse F-31400, France;

    ICA (Institut Clement Ader), CNRS, INSA, ISAE, UPS, Mines Albi, Universite de Toulouse, 3 rue Caroline Aigle, Toulouse F-31400, France;

    ICA (Institut Clement Ader), CNRS, INSA, ISAE, UPS, Mines Albi, Universite de Toulouse, 3 rue Caroline Aigle, Toulouse F-31400, France;

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