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首页> 外文期刊>Journal of Sandwich Structures and Materials >Free vibration and vibrational displacements analysis of thick elastically supported laminated curved panels with power-law distribution functionally graded layers and finite length via 2D GDQ method
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Free vibration and vibrational displacements analysis of thick elastically supported laminated curved panels with power-law distribution functionally graded layers and finite length via 2D GDQ method

机译:通过二维GDQ方法分析具有幂律分布功能梯度层和有限长度的厚弹性支撑层压弯曲面板的自由振动和振动位移

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This paper deals with free vibration and vibrational displacements analysis of thick laminated curved panels with finite length resting on two-parameter elastic foundations based on the three-dimensional elasticity theory. Because of using two-dimensional generalized differential quadrature method, the present approach makes possible vibration analysis of cylindrical panels with two opposite axial edges simply supported and arbitrary boundary conditions including free, simply supported and clamped at the curved edges. The material properties vary continuously through the layers' thickness according to a three-parameter power-low distribution. It is assumed that the inner surfaces of the functionally graded sheets are metal rich, while the outer surfaces of the layers can be metal rich, ceramic rich or made of a mixture of two constituents. The benefit of using the considered power-law distribution is to illustrate and present useful results arising from symmetric and asymmetric profiles. The effects of two-parameter elastic foundation modulus, geometrical and material parameters together with the boundary conditions on the frequency parameters of the laminated functionally graded panels are investigated. The obtained results show that the outer functionally graded material layers have significant effect on the vibration behavior of cylindrical panels. This study serves as a benchmark for assessing the validity of numerical methods or two-dimensional theories used to analysis of laminated curved panels.
机译:本文基于三维弹性理论,对两参数弹性地基上有限长的厚层压板的自由振动和振动位移进行了分析。由于使用二维广义微分正交方法,本方法使得具有两个相对轴向边缘的圆柱板的振动分析成为可能,该两个轴向边缘分别被简单地支撑,并且任意边界条件包括自由,简单地支撑和夹紧在弯曲边缘处。材料特性根据三参数低功率分布在层的厚度中连续变化。假定功能梯度板的内表面富含金属,而层的外表面可以富含金属,富含陶瓷或由两种成分的混合物制成。使用考虑的幂律分布的好处是可以说明和呈现由对称和不对称轮廓产生的有用结果。研究了两参数弹性地基模量,几何和材料参数以及边界条件对层压功能梯度板频率参数的影响。所得结果表明,外部功能梯度材料层对圆柱面板的振动行为具有显着影响。这项研究可作为评估用于分析叠层弯曲面板的数值方法或二维理论有效性的基准。

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