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Damping for large-amplitude vibrations of plates and curved panels, Part 1: Modeling and experimentsy

机译:板和弯曲面板大振幅振动的阻尼,第1部分:建模和实验

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摘要

Theoretical and experimental non-linear vibrations of thin rectangular plates and curved panels subjected to out-of-plane harmonic excitation are investigated. Experiments have been performed on isotropic and laminated sandwich plates and panels with supported and free boundary conditions. A sophisticated measuring technique has been developed to characterize the non-linear behavior experimentally by using a Laser Doppler Vibrometer and a stepped-sine testing procedure. The theoretical approach is based on Donnell's non-linear shell theory (since the tested plates are very thin) but retaining in-plane inertia, taking into account the effect of geometric imperfections. A unified energy approach has been utilized to obtain the discretized non-linear equations of motion by using the linear natural modes of vibration. Moreover, a pseudo arc-length continuation and collocation scheme has been used to obtain the periodic solutions and perform bifurcation analysis. Comparisons between numerical simulations and the experiments show good qualitative and quantitative agreement. It is found that, in order to simulate large-amplitude vibrations, a damping value much larger than the linear modal damping should be considered. This indicates a very large and non-linear increase of damping with the increase of the excitation and vibration amplitude for plates and curved panels with different shape, boundary conditions and materials. (C) 2016 Elsevier Ltd. All rights reserved.
机译:研究了矩形薄板和弯曲板受到平面外谐波激励的理论和实验非线性振动。已经在具有支撑和自由边界条件的各向同性和层压夹心板和面板上进行了实验。通过使用激光多普勒振动计和步进正弦测试程序,已开发出一种先进的测量技术来表征非线性行为。理论方法基于Donnell的非线性壳理论(因为被测板非常薄),但考虑了几何缺陷的影响,但保留了平面惯性。通过使用线性自然振动模态,已采用统一的能量方法来获得离散的非线性运动方程。此外,伪弧长连续和并置方案已用于获得周期解并进行分叉分析。数值模拟与实验之间的比较显示出良好的定性和定量一致性。已经发现,为了模拟大振幅振动,应考虑比线性模态阻尼大得多的阻尼值。这表明,对于形状,边界条件和材料不同的板和弯曲板,阻尼随着激励和振动幅度的增加而呈很大的非线性增加。 (C)2016 Elsevier Ltd.保留所有权利。

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