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Vibration frequency analysis of three-layered cylinder shaped shell with effect of FGM central layer thickness

机译:受FGM中心层厚度影响的三层圆柱壳振动频率分析

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摘要

In this research, vibration frequency analysis of three layered functionally graded material (FGM) cylinder-shaped shell is studied with FGM central layer and the internal and external layers are of homogenous material. Strain and curvature-displacement relations are taken from Sander’s shell theory. The shell frequency equation is obtained by employing the Rayleigh Ritz method. Influence on natural frequencies (NFs) is observed for various thickness of the middle layer. The characteristics beam functions are used to estimate the dependence of axial modal. Results are obtained for thickness to radius ratios and length to radius ratios for different edge conditions. The validity of this method is checked for numerous results in the open literature.
机译:本研究以三层功能梯度材料(FGM)圆柱壳为中心进行振动频率分析,其内外层为均质材料。应变和曲率位移关系取自桑德的壳理论。壳频率方程是通过使用Rayleigh Ritz方法获得的。对于中间层的各种厚度,可以观察到对自然频率(NFs)的影响。特性梁函数用于估计轴向模态的依赖性。获得了不同边缘条件下厚度与半径之比和长度与半径之比的结果。对于公开文献中的大量结果,都检查了此方法的有效性。

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