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Analysis of functionally graded sandwich plates using a higher-order layerwise theory

机译:使用高阶层理论分析功能渐进式夹层板

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摘要

A higher-order layerwise finite element formulation is presented for static and dynamic analyses of functionally graded material (FGM) sandwich plates. A higher-order displacement field is assumed for core and first-order displacement field is assumed for top and bottom facesheets maintaining a continuity of displacement at layer interface. An eight noded isoparametric element using a C based finite element formulation with thirteen degrees of freedom per node has been considered in the present work. Two configurations of FGM sandwich plates, one with FGM core and homogenous facesheets and second having top and bottom layers made of FGM and homogenous core are considered. Effective material properties of the FGM are computed using rule of mixture (ROM). In order to establish the correctness of the present finite element formulation for wide range of problems for two configurations of FGM sandwich plates, comparison studies are presented. Next, parametric studies are taken up to investigate the effects of volume fraction index, span to thickness ratio and boundary conditions on static and dynamic behavior of FGM sandwich plate. It is shown here that present formulation is simple, straightforward and accurate for static and dynamic analyses of functionally graded material (FGM) sandwich plates.
机译:提出了一种高阶层有限元制剂,用于功能上梯度材料(FGM)三明治板的静态和动态分析。假设一个高阶位移字段对于核心和一阶位移场,用于顶部和底部面板,保持在层接口处的位移的连续性。在本工作中考虑了使用基于C基于C的有限元配方的八个点开的异戊酰胺元件,并且在本工作中已经考虑了每节点的十三个自由度。考虑了FGM夹层板的两种配置,具有FGM核心和均匀的面板,以及由FGM和均匀核心制成的顶层和均匀的核心和均匀核心。使用混合物(ROM)的规则来计算FGM的有效材料特性。为了建立目前有限元配方的正确性,对于两种FGM夹层板的两种配置,提出了比较研究。接下来,采用参数化研究来研究体积分数指数,跨度对FGM三明治板静态和动态行为的厚度比和边界条件的影响。这里示出了现有的制剂简单,简单,可用于功能渐变材料(FGM)夹层板的静态和动态分析。

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