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首页> 外文期刊>Journal of Sandwich Structures and Materials >Nonlinear dynamic response and vibration of imperfect eccentrically stiffened sandwich third-order shear deformable FGM cylindrical panels in thermal environments
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Nonlinear dynamic response and vibration of imperfect eccentrically stiffened sandwich third-order shear deformable FGM cylindrical panels in thermal environments

机译:非线性动力响应和振动的偏心加固夹层三阶剪切可变形FGM圆柱板在热环境中

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摘要

This study follows an analytical approach to investigate the nonlinear dynamic response and vibration of eccentrically stiffened sandwich functionally graded material (FGM) cylindrical panels with metal-ceramic layers on elastic foundations in thermal environments. It is assumed that the FGM cylindrical panel is reinforced by the eccentrically longitudinal and transversal stiffeners and subjected to mechanical and thermal loads. The material properties are assumed to be temperature dependent and graded in the thickness direction according to a simple power law distribution. Based on the Reddy's third-order shear deformation shell theory, the motion and compatibility equations are derived taking into account geometrical nonlinearity and Pasternak-type elastic foundations. The outstanding feature of this study is that both FGM cylindrical panel and stiffeners are assumed to be deformed in the presence of temperature. Explicit relation of deflection-time curves and frequencies of FGM cylindrical panel are determined by applying stress function, Galerkin method and fourth-order Runge-Kutta method. The influences of material and geometrical parameters, elastic foundations and stiffeners on the nonlinear dynamic and vibration of the sandwich FGM panels are discussed in detail. The obtained results are validated by comparing with other results in the literature.
机译:本研究遵循一种分析方法来研究偏心式夹层的非线性动力响应和振动,在热环境中的弹性基础上具有金属陶瓷层的诸如金属陶瓷层的非线性动力响应和振动。假设FGM圆柱形面板由偏心纵向和横向加强件加强并经受机械和热负荷。假设材料特性是根据简单的动力法分布在厚度方向上依赖的温度和渐变。基于Reddy的三阶剪切变形壳理论,考虑到几何非线性和Pasternak型弹性基础的运动和兼容方程。本研究的突出特征是,假设在温度存在下使FGM圆柱形面板和加强件变形。通过施加应力函数,Galerkin方法和第四阶runge-kutta方法确定FGM圆柱形面板的偏转时间曲线和频率的明确关系。详细讨论了材料和几何参数,弹性基础和加强件对夹层FGM面板的非线性动态和振动的影响。通过与文献中的其他结果进行比较,验证所得结果。

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