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Nonlinear vibrations of a beam with non-ideal boundary conditions and stochastic excitations - experiments, modeling and simulations

机译:具有非理想边界条件和随机激励的梁的非线性振动-实验,建模和模拟

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This paper presents experiments and numerical simulations of a nonlinear clamped-clamped beam subjected to stochastic broadband excitations. Broadband excitations are performed experimentally in order to show the hardening effect and the enlargement of the response peak in the vicinity of the primary resonance, and to detect the presence of secondary peaks resulting from the harmonics generated by the primary resonance.Using the decomposition of a random signal into a multi-harmonic periodic equivalent signal, the shooting method and the Harmonic Balance Method (HBM) are used to simulate the response of the nonlinear clamped-clamped beam subjected to a stochastic excitation. The latter is modeled as a multi-harmonic periodic equivalent signal in order to be used by both the shooting method and the HBM. A periodogram strategy is used to ensure a good estimate of the resulting Power Spectral Density (PSD). The two nonlinear methods are compared in terms of computation time and precision. A specific attention is paid on correct use of these methods.Finally, comparison between experiments and numerical simulations are performed for different levels of stochastic excitations. Good correlations are observed thus validating the global nonlinear proposed strategy. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文介绍了受到非线性随机宽带激励的非线性夹钳梁的实验和数值模拟。通过实验进行宽带激励,以显示硬化效应和初级共振附近响应峰的扩大,并检测由初级共振产生的谐波产生的次级峰的存在。将随机信号转换成多谐波周期等效信号,采用射击法和谐波平衡法(HBM)来模拟非线性夹钳光束在随机激励下的响应。后者被建模为多谐波周期性等效信号,以便由射击方法和HBM共同使用。使用周期图策略可确保对生成的功率谱密度(PSD)进行良好的估计。比较了两种非线性方法的计算时间和精度。正确使用这些方法时要特别注意。最后,针对不同水平的随机激励进行了实验和数值模拟之间的比较。观察到良好的相关性,从而验证了全局非线性提出的策略。 (C)2019 Elsevier B.V.保留所有权利。

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    Ecole Cent Lyon, Lab Tribol & Dynam Syst, UMR 5513, CNRS, 36 Ave Guy de Collongue, F-69134 Ecully, France|CEA, CESTA, DAM, F-33114 Le Barp, France;

    CEA, CESTA, DAM, F-33114 Le Barp, France;

    Ecole Cent Lyon, Lab Tribol & Dynam Syst, UMR 5513, CNRS, 36 Ave Guy de Collongue, F-69134 Ecully, France|Inst Univ France, F-75005 Paris, France;

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