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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Free vibration and buckling characteristics of laminated composite and sandwich plates implementing a secant function based shear deformation theory
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Free vibration and buckling characteristics of laminated composite and sandwich plates implementing a secant function based shear deformation theory

机译:层合复合材料和夹层板的自由振动和屈曲特性,采用基于割线函数的剪切变形理论

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摘要

A generalized finite element modeling of recently developed secant function based shear deformation theory is formulated and implemented for free vibration and buckling characteristics of laminated-composite and sandwich plates. The shear deformation is expressed in terms of a secant function of thickness coordinate. The theory inherently satisfies the zero transverse shear conditions on top and bottom surfaces of the plate. An eight-noded C-0 continuous element is chosen by an adequate choice of nodal field variables. The governing equations are obtained for the free vibration and buckling responses of laminated-composite and sandwich plates. Intensive numerical experiments are conducted to investigate the influence of span-thickness ratio, boundary conditions, etc. on the free vibration and buckling behavior. The comparison of present results with the published results indicates the performance and range of applicability of the present theory in the framework of finite element analysis.
机译:针对层合复合材料和夹心板的自由振动和屈曲特性,建立并实现了基于最近割线函数的剪切变形理论的广义有限元建模。剪切变形用厚度坐标的割线函数表示。该理论固有地满足了板的顶部和底部表面上的零横向剪切条件。通过适当选择节点场变量来选择八节点C-0连续单元。获得了层合复合材料和夹心板的自由振动和屈曲响应的控制方程。进行了密集的数值实验,以研究跨度厚度比,边界条件等对自由振动和屈曲行为的影响。当前结果与已发表结果的比较表明,本理论在有限元分析框架内的性能和适用范围。

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