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Influence of Aspect Ratio of Vibratory Flap on Dynamic Response of Clamped Rectangular Plate

机译:振动瓣长宽比对矩形板动力响应的影响。

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摘要

The transverse vibration control of a clamped, rectangular, isotropic plate by a vibratory flap subjected to harmonic excitation has been investigated by Finite Element Analysis (FEA) and experimental technique. The vibratory flap is a new plate-type dynamic vibration absorber, which can vibrate on the plate when attached as a cantilever plate. The study has been focused specifically on the influence of aspect ratio of vibratory flap on the dynamic response of the plate at constant mass ratio and constant tuning frequency ratio. The study has revealed that the dynamic response of the plate varies with respect to the aspect ratio for aforementioned conditions. An optimum aspect ratio has also been obtained by minimizing the mass ratio with maximum attenuation in the first and second target frequencies. The results have shown that the optimized flap can trim down the plate vibrations by up to 90-95% in the fundamental mode. Moreover, the dynamic response of the plate can be improved to a great extent due to the adoption of an optimal aspect ratio of the flap. Finally, the experimental outcomes have shown fairly good agreement with the results obtained from the finite element analysis.
机译:通过有限元分析(FEA)和实验技术,研究了通过振动板在谐波激励下对矩形矩形各向同性板的横向振动控制。振动阀瓣是一种新型的板式动态吸振器,当作为悬臂板安装时可以在板上振动。这项研究的重点是在恒定质量比和恒定调谐频率比下,振动襟翼的纵横比对板的动态响应的影响。研究表明,在上述条件下,板的动态响应随纵横比的变化而变化。通过使质量比最小且在第一和第二目标频率中具有最大衰减,也获得了最佳的纵横比。结果表明,在基本模式下,优化的襟翼可以将板的振动降低多达90-95%。此外,由于采用了襟翼的最佳纵横比,因此可以在很大程度上改善板的动态响应。最后,实验结果与有限元分析的结果吻合得很好。

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