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首页> 外文期刊>Journal of Sandwich Structures and Materials >Free vibration of functionally graded sandwich plates based on nth-order shear deformation theory via differential quadrature method
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Free vibration of functionally graded sandwich plates based on nth-order shear deformation theory via differential quadrature method

机译:基于差分正交方法的基于Nth阶剪切变形理论的功能梯形夹层板的自由振动

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摘要

The present study is concerned with free vibration of functionally graded sandwich plates on elastic foundation based on nth-order shear deformation theory. The material properties of functionally graded plate are assumed to vary according to power law distribution of the volume fraction of the constituents, and two common types of FG sandwich plates are considered. Governing differential equations are derived by means of Hamilton's principle. The differential quadrature method is developed to formulate the problem, and rapid convergence is observed in this study. A numerical comparison is carried out to show the validity of the proposed theory with available results in the literature. Furthermore, effects of gradient indexes, thickness side ratio, aspect ratio, foundation parameters, boundary condition and different sandwich types on the natural frequency of plates are also studied.
机译:本研究涉及基于Nth阶剪切变形理论的弹性基础上功能梯形夹层板的自由振动。 假设功能梯度板的材料特性根据组分的体积分数的电力法分布而变化,并且考虑了两种常见类型的FG夹层板。 控制微分方程是通过汉密尔顿的原则来源的。 开发了差分正交方法以制定问题,并且在本研究中观察到快速收敛。 进行了数值比较,以显示提出的理论的有效性,在文献中有可用的结果。 此外,还研究了梯度指标,厚度侧比,纵横比,基础参数,边界条件和不同夹层类型对板的固有频率的影响。

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