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Variational Approximate and Mixed-Finite Element Solution for Static Analysis of Laminated Composite Plates

机译:层合复合板静力学分析的变分近似和混合有限元解

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摘要

The main objective of the present study is to give a systematic way for the derivation of laminated composite plates by using the mixed type finite element formulation with a functional. The first order shear deformation plate theory is used. Differential field equations of composite plates are derived from virtual displacement principle. These equations were written in operator form then by using the Gateaux differential method, a new functional which including the dynamic and geometric boundary conditions is obtained after provide potential conditions. Applying mixed-type finite element based on this new functional, a plate element namely FOPLT32 is derived which have 8 degrees of freedoms on per node, total 32 freedoms. The reliability of the derived FOPLT32 plate elements for static analysis is verified, since the results obtained have been shown to agree well with the existing ones.
机译:本研究的主要目的是通过使用具有功能性的混合型有限元公式,为派生层压复合板提供一种系统化的方法。使用一阶剪切变形板理论。复合板的微分场方程是根据虚拟位移原理导出的。这些方程以算子形式编写,然后通过使用Gateaux微分方法,在提供潜在条件后获得了包含动态和几何边界条件的新函数。应用基于此新功能的混合型有限元,得出了一个名为FOPLT32的板单元,其每个节点具有8个自由度,共32个自由度。验证了所得FOPLT32平板元件用于静态分析的可靠性,因为已证明所获得的结果与现有结果十分吻合。

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