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首页> 外文期刊>Mechanical systems and signal processing >Static bending deflection and free vibration analysis of moderate thick symmetric laminated plates using multidimensional wave digital filters
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Static bending deflection and free vibration analysis of moderate thick symmetric laminated plates using multidimensional wave digital filters

机译:中等厚度对称层压板的静弯曲挠度和自由振动的多维波数字滤波器分析

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摘要

This paper aims to develop a multidimensional wave digital filtering network for predicting static and dynamic behaviors of composite laminate based on the FSDT. The resultant network is, thus, an integrated platform that can perform not only the free vibration but also the bending deflection of moderate thick symmetric laminated plates with low plate side-to-thickness ratios (<=20). Safeguarded by the Courant-Friedrichs-Levy stability condition with the least restriction in terms of optimization technique, the present method offers numerically high accuracy, stability and efficiency to proceed a wide range of modulus ratios for the FSDT laminated plates. Instead of using a constant shear correction factor (SCF) with a limited numerical accuracy for the bending deflection, an optimum SCF is particularly sought by looking for a minimum ratio of change in the transverse shear energy. This way, it can predict as good results in terms of accuracy for certain cases of bending deflection. Extensive simulation results carried out for the prediction of maximum bending deflection have demonstratively proven that the present method outperforms those based on the higher-order shear deformation and layerwise plate theories. To the best of our knowledge, this is the first work that shows an optimal selection of SCF can significantly increase the accuracy of FSDT-based laminates especially compared to the higher order theory disclaiming any correction. The highest accuracy of overall solution is compared to the 3D elasticity equilibrium one.
机译:本文旨在开发一种基于FSDT的多维波数字滤波网络,用于预测复合材料层压板的静态和动态行为。因此,最终的网络是一个集成平台,该平台不仅可以执行自由振动,而且还可以执行具有低板宽比(<= 20)的中等厚度对称层压板的弯曲变形。通过在优化技术方面受最少限制的Courant-Friedrichs-Levy稳定条件的保障,本方法在数值上具有较高的准确性,稳定性和效率,可以对FSDT层压板进行宽范围的模量比。代替使用具有有限的数值精度的恒定剪切校正因子(SCF)来进行弯曲挠度,尤其是通过寻找横向剪切能量变化的最小比率来寻求最佳SCF。这样,对于某些特定的弯曲变形情况,它可以在准确性方面预测出良好的结果。为预测最大弯曲挠度而进行的大量仿真结果证明了本方法优于基于高阶剪切变形和分层板理论的方法。据我们所知,这是第一项表明选择SCF可以显着提高FSDT基层压板精度的工作,特别是与不要求任何校正的高阶理论相比。将整体解决方案的最高精确度与3D弹性平衡之一进行比较。

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