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Vibration analysis of elastically restrained laminated composite sound radiation plates via a finite element approach

机译:通过有限元方法弹性抑制层压复合声辐射板的振动分析

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The vibration characteristics (natural frequencies and vibration shapes) of elastically restrained laminated composite plates used for sound radiation are studied via both theoretical and experimental approaches. The laminated composite sound radiation plates restrained by peripheral and/or interior elastic supports are excited using an electro-magnetic exciter for generating sounds. In the theoretical study, a finite element formulation is presented to model the free and forced vibrations of the elastically restrained laminated composite plate. The present finite element method is then used to study the effects of support conditions, plate aspect ratio, and size ratio of plate length to voice coil radius on the vibration characteristics of the elastically restrained laminated composite sound radiation plates. In the experimental study, several centrally restrained laminated composite plates were subjected to sweep sine excitation to determine the frequency response spectra from which the natural frequencies of the plates were identified. The elastically restrained laminated composite plates with salt powder distributed on their top surfaces were excited to generate the vibration shapes of the plates at several selected frequencies. The experimental results are then used to verify the feasibility and accuracy of the proposed finite element model. The close agreement between the experimental and theoretical results has validated the suitability of the proposed finite element model for vibration analysis of sound radiation plates. The theoretical and experimental results presented in this paper can also serve as benchmarks for verifying the correctness of any analytical model established for vibration analysis of laminated composite sound radiation plates.
机译:通过理论和实验方法研究了用于声辐射的弹性受限制的层压复合板的振动特性(自然频率和振动形状)。由外围和/或内部弹性支撑件限制的层叠复合声辐射板使用用于产生声音的电磁激励器来激发。在理论研究中,提出了一种有限元制剂以模拟弹性束缚的层压复合板的自由振动。然后,目前的有限元方法研究了在弹性受限制的层压复合声辐射板的振动特性上的板长与音圈半径的支撑条件,板宽比和尺寸比的影响。在实验研究中,对几个中央受限制的层压复合板进行扫描正弦激励以确定识别板的固有频率的频率响应光谱。具有分布在其顶表面上的盐粉的可弹性限制的层压复合板被激发以在几种选定的频率下产生板的振动形状。然后使用实验结果来验证所提出的有限元模型的可行性和准确性。实验和理论结果之间的密切一致性验证了所提出的有限元模型对声辐射板的振动分析的适用性。本文提出的理论和实验结果也可以用作验证建立用于振动分析的任何分析模型的基准,用于振动分析层压复合声辐射板。

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