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Experimental and Numerical Investigation on Vibration of Sandwich Plates with Honeycomb Cores Based on Radial Basis Function

机译:基于径向基函数的蜂窝芯夹芯板振动试验与数值研究

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摘要

The vibration characteristic of the sandwich plate with a honeycomb core was investigated by experimental measurements and numerical calculation based on radial basis function (RBF). RBF method was used not only in the meshless approach but also in the post-processing of the experimental data. During the experiment, amplitude-fluctuation electronic speckle pattern interferometry was applied to access the resonant frequencies and the corresponding vibration mode shapes simultaneously. Then RBF method was used to improve the quality of patterns and reconstruct the out-of-plane vibration amplitude after fringe analysis. As for numerical calculation, the modal parameters were numerically predicted using the first-order shear deformation theory. The computation approach was based on collocation with multi-quadric radial basis function. To understand the influence of the thickness of face sheet on dynamic behaviors, three types of specimens with different thickness were tested and analyzed. Of particular interest was that the vibration modes show veering due to the thickness increment. Furthermore, the numerical predicted results were compared with the experimental measurements for the first five modes. They are in good agreement with each other for resonant frequencies, mode shapes and relative out-of-plane amplitudes.
机译:通过实验测量和基于径向基函数(RBF)的实验测量和数值计算研究了具有蜂窝核心的夹层板的振动特性。 RBF方法不仅在无网格方法中使用,而且在实验数据的后处理中使用。在实验期间,施加幅度波动电子散斑图案干涉法以同时进入谐振频率和相应的振动模式。然后,RBF方法用于提高图案的质量,并在边缘分析后重建平面外振动幅度。对于数值计算,使用一阶剪切变形理论进行数值预测模态参数。计算方法是基于与多反流径向基函数的搭配。要了解面板厚度对动态行为的影响,测试并分析了三种具有不同厚度的样本。特别感兴趣的是,由于厚度增量,振动模式显示了转向。此外,将数值预测结果与前五种模式的实验测量进行了比较。它们与谐振频率,模式形状和相对外平面振幅相互吻合。

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