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Geometrically nonlinear forced vibrations of the symmetric honeycomb sandwich panels affected by the water

机译:受水影响的对称蜂窝夹芯板的几何非线性强迫振动

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Geometrically nonlinear forced vibrations of the symmetric rectangular honeycomb sandwich panels with the four edges simply supported and one surface affected by the water are investigated in this paper using the homotopy analysis method (HAM). The honeycomb core of hexagonal cells is modeled as a thick layer of orthotropic material whose physical and mechanical properties are determined using the Gibson correlations. The effect of water acting on honeycomb panels can be described as added mass, additional damping and additional stiffness coefficients which are obtained by the semi-analytical fluid pressures. The basic formulation of nonlinear forced vibrations has been developed base on the third-order shear deformation plate theory and Green Lagrange nonlinear strain-displacement relation. The equilibrium equations have been obtained using the Hamilton's principle. Effects of water velocity, height and height ratio on the nonlinear forced vibration response have been studied for the honeycomb sandwich panels.
机译:本文利用同伦分析方法(HAM)研究了四边简单支撑且一个表面受水影响的对称矩形蜂窝夹芯板的几何非线性强迫振动。六角形蜂窝的蜂窝状核心被建模为正交各向异性材料的厚层,其物理和机械性能是使用吉布森相关性确定的。水作用在蜂窝板上的影响可以描述为通过半分析流体压力获得的附加质量,附加阻尼和附加刚度系数。基于三阶剪切变形板理论和格林拉格朗日非线性应变-位移关系,开发了非线性强迫振动的基本公式。使用汉密尔顿原理获得了平衡方程。研究了蜂窝夹芯板的水速,高度和高度比对非线性强迫振动响应的影响。

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