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首页> 外文期刊>International Journal of Mechanical Sciences >Free vibration analysis of corrugated-core sandwich plates using a meshfree Galerkin method based on the first-order shear deformation theory
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Free vibration analysis of corrugated-core sandwich plates using a meshfree Galerkin method based on the first-order shear deformation theory

机译:基于一阶剪切变形理论的无网格Galerkin方法对瓦楞芯夹心板的自由振动分析

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摘要

This paper focuses on free vibration analysis of corrugated-core sandwich plates (CSP) via a meshfree Galerkin method based on a first-order shear deformation theory (FSDT). A CSP is considered as a composite structure of three members - two face sheets at the top and the bottom, and one corrugated sheet in the middle of the structure. The face sheets are taken as isotropic plates, and the corrugated sheet is approximated by an orthotropic plate that has different elastic properties along the two perpendicular directions. Dynamic equations of the members are given by the meshfree Galerkin method based on the FSDT. After overcoming the difficulty to implement the displacement compatibility conditions among the members, the governing equation for the entire CSP is obtained by superposing the dynamic equations of the members. The meshfree characteristic of the proposed method guarantee that no meshes are used in deriving the dynamic equations, therefore the proposed method is more flexible in studying problems for which remeshing is inevitable with the finite element methods. The approximation of the corrugated sheet with an orthotropic plate also simplifies the analysis without much loss of precision. A few selected examples are studied to demonstrate the accuracy and convergence of the proposed method. The results obtained for these examples are compared with the ANSYS solutions. Good agreement is evident for all cases.
机译:本文重点研究基于一阶剪切变形理论(FSDT)的无网格Galerkin方法对瓦楞芯夹心板(CSP)的自由振动分析。 CSP被认为是由三个构件组成的复合结构-顶部和底部的两个面板和结构中间的一个波纹板。面板被视为各向同性板,而波纹状板由正交各向异性板近似,该正交各向异性板在两个垂直方向上具有不同的弹性。通过基于FSDT的无网格Galerkin方法给出了构件的动力学方程。在克服了实现构件间位移兼容性条件的困难之后,通过叠加构件的动力学方程式来获得整个CSP的控制方程。所提方法的无网格特性保证了在推导动力学方程时不使用任何网格,因此,所提方法在研究有限元法不可避免地需要重新网格化的问题上具有更大的灵活性。波纹板与正交异性板的近似也简化了分析,而没有太多的精度损失。研究了几个选定的例子,以证明所提出方法的准确性和收敛性。将这些示例获得的结果与ANSYS解决方案进行比较。在所有情况下都可以达成良好的协议。

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