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Free vibrations of composite sandwich plates by Chebyshev collocation technique

机译:切比雪夫搭配技术在复合材料夹心板中产生自由振动

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摘要

In this study, free axisymmetric vibrations of composite circular sandwich plates with isotropic core and orthotropic facings have been studied using first-order shear deformation theory. The thickness of the core is assumed to vary exponentially in the radial direction and the face sheets is treated as membrane of constant thickness. The effect of shear deformation and rotatory inertia in the core has been taken into account. The governing differential equations of the present model have been obtained by applying Hamilton's principle. Chebyshev collocation technique has been used to obtain the frequency equations for the plate when it is clamped or simply supported or free at the edge. The first three roots of these equations have been reported as the natural frequencies for the first three modes of vibration. The effect of taper parameter, facing thickness and core thickness on the frequency parameter has been investigated. Comparison of results for some special cases with published results obtained by other approximate methods has been presented which shows an excellent agreement. Mode shapes for a specified plate for all the three boundary conditions have been plotted.
机译:在这项研究中,利用一阶剪切变形理论研究了具有各向同性芯和正交各向异性面的复合圆形夹层板的自由轴对称振动。假定芯的厚度沿径向成指数变化,并且将面板视为恒定厚度的膜。考虑了岩心中的剪切变形和旋转惯性的影响。应用汉密尔顿原理获得了本模型的控制微分方程。 Chebyshev搭配技术已被用来获得板的频率方程,该板在边缘处被夹紧或简单支撑或自由移动。这些方程式的前三个根被报告为前三个振动模式的固有频率。研究了锥度参数,饰面厚度和铁心厚度对频率参数的影响。提出了一些特殊情况下的结果与通过其他近似方法获得的已发布结果的比较,这显示了极好的一致性。绘制了所有三个边界条件下指定板的模式形状。

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