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Dynamic stiffness matrix of continuous element for vibration of thick cross-ply laminated composite cylindrical shells

机译:连续交联的层状叠层复合圆柱壳振动的连续单元动力刚度矩阵

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摘要

This paper investigates the vibration analysis of thick laminated composite cylindrical shells by a continuous element constructed from the dynamic stiffness matrix. Based on the analytical solutions of the differential equations of thick composite cylindrical shell taking into account the shear deflection effects, the dynamic stiffness matrix has been built from which natural frequencies are easily calculated. A computer program is developed for performing the numerical calculations and results from specific case studies are presented. Results on natural frequencies and harmonic responses of this work are compared to published analytical and Finite Element Method (FEM) results. Numerical examples demonstrate that the proposed model can be used to solve efficiently the vibration analysis of thick cross-ply composite cylindrical shell with many advantages: size of model reduced, time of computing saved, higher precision, direct acquisition of harmonic response and suitable for the analysis of medium and high frequency range.
机译:本文研究了由动态刚度矩阵构成的连续单元对厚叠层复合圆柱壳的振动分析。基于考虑剪切变形影响的厚复合圆柱壳微分方程的解析解,建立了动态​​刚度矩阵,从中可以轻松计算固有频率。开发了用于执行数值计算的计算机程序,并提供了来自特定案例研究的结果。将这项工作的固有频率和谐波响应结果与已发表的分析和有限元方法(FEM)结果进行比较。数值算例表明,所提出的模型可以有效地解决厚截面交叉复合材料圆柱壳的振动分析,具有许多优点:模型尺寸减小,节省计算时间,精度更高,谐波响应直接获取且适合于中高频范围的分析。

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