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首页> 外文期刊>Steel & Composite Structures: An International Journal >Evaluation of vibroacoustic responses of laminated composite sandwich structure using higher-order finite-boundary element model
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Evaluation of vibroacoustic responses of laminated composite sandwich structure using higher-order finite-boundary element model

机译:使用高阶有限边界元模型评价层压复合夹层结构的纵向响应

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摘要

In this paper, the vibroacoustic responses of baffled laminated composite sandwich flat panel structure under the influence of hannonic excitation are studied numerically using a novel higher-order coupled finite-boundary element model. A numerical scheme for the vibrating plate has been developed in the frame work of the higher-order mid-plane kinematics and the eigen frequencies are obtained by employing suitable finite element steps. The acoustic responses are then computed by solving the Helmholtz wave equation using boundary element method coupled with the structural finite elements. The proposed scheme has been implemented via an own MATLAB base code to compute the desired responses. The validity of the present model is established from the conformance of the current natural frequencies and the radiated sound power with the available benchmark solutions. The model is further utilized to scrutinize the influence of core-to-face thickness ratio, modular ratio, lamination scheme and the support condition on the sound radiation characteristics of the vibrating sandwich flats panel. It can be concluded that the present scheme is not only accurate but also efficient and simple in providing solutions of the coupled vibroacoustic response of laminated composite sandwich plates.
机译:本文用新颖的高阶耦合有限边界元模型进行了数值在数值上进行了困扰层压复合夹层平板结构的凹陷层压复合夹层平板结构的弧形响应。在高阶中平面运动学的框架工作中开发了一种用于振动板的数值方案,并且通过采用合适的有限元步骤获得特征频率。然后通过使用与结构有限元件耦合的边界元件方法来求解Helmholtz波动方程来计算声响应。通过自己的MATLAB基本代码实现了所提出的方案来计算所需的响应。本模型的有效性是从当前自然频率的一致性和辐射声功率与可用的基准解决方案建立。该模型进一步用于仔细地审查芯对厚度比,模块化比,层压方案和支撑条件对振动夹层平面板的声辐射特性的影响。可以得出结论,本方案不仅准确而且还高效,简单地提供了层压复合夹层板的耦合弧声反应的解决方案。

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