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Damping for large-amplitude vibrations of plates and curved panels, part 2: Identification and comparisons

机译:板和弯曲板大振幅振动的阻尼,第2部分:识别和比较

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摘要

A non-linear identification technique based on the harmonic balance method is presented to obtain the damping ratio and non-linear parameters of isotropic and laminated sandwich rectangular plates and curved panels, subjected to harmonic excitation orthogonal to the surface. The response of structures under consideration is approximated by a single-degree of freedom Duffing oscillator accounting for viscous damping, quadratic and cubic non-linear stiffness. The method uses experimental frequency-amplitude data and a least-squares technique to identify parameters and reconstruct frequency-response curves by spanning the excitation frequency in the neighborhood of the lowest natural frequencies. In particular, an iterative procedure is implemented to construct the mean displacement and identify the damping ratio. Close agreement is seen between the reconstructed non-linear frequency-amplitude curves, the experimental data and the results of the reduced-order model obtained in part 1 of the present study (Alijani et al., 2015 pp. The proposed identification technique confirms the very large increase of damping during large-amplitude vibrations, as observed in part 1 of the present study, and demonstrates a non-linear correlation between damping, vibration amplitude and excitation level. (C) 2016 Elsevier Ltd. All rights reserved.
机译:提出了一种基于谐波平衡法的非线性辨识技术,以得到各向同性和叠层夹心矩形板和弯曲板在垂直于表面的谐波激励下的阻尼比和非线性参数。考虑中的结构的响应可通过考虑粘性阻尼,二次和三次非线性刚度的单自由度Duffing振荡器来近似。该方法使用实验频率振幅数据和最小二乘技术来识别参数,并通过在最低自然频率附近扩展激发频率来重建频率响应曲线。特别地,执行迭代过程以构造平均位移并确定阻尼比。在重建的非线性频率-振幅曲线,实验数据和本研究的第1部分获得的降阶模型的结果之间可以看到紧密的一致性(Alijani et al。,2015 pp。在本研究的第1部分中观察到,大振幅振动过程中阻尼的极大增加,并证明了阻尼,振动幅度和激励水平之间存在非线性关系(C)2016 Elsevier Ltd.保留所有权利。

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