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Non-linear vibration analysis of laminated composite circular cylindrical shells

机译:层合复合圆柱壳的非线性振动分析

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The non-linear transverse dynamic response of laminated composite simply supported circular cylindrical shell subjected to periodic radial point loading and static axial partial loading is studied in this paper considering von Korman type of non-linearity. The applied partial edge loading is represented by Fourier series and the exact prebuckling stress distribution within the cylindrical shell is computed by solving the in-plane elasticity problem. Donnell's shell theory incorporating first order shear deformation, in-plane and rotary inertia is used to model the cylindrical shell. Galerkin's method is used to reduce the governing partial differential equations to a set of non-linear ordinary differential equations. These equations are solved using Incremental Harmonic Balance (IHB) method to obtain frequency-amplitude responses for free and forced vibration. The numerical results illustrate the effects of number of layers, static partial preloading, and initial geometric imperfections on the non-linear forced vibration of laminated composite cylindrical shells. (C) 2016 Elsevier Ltd. All rights reserved.
机译:考虑von Korman类型的非线性,研究了层合复合简支圆柱壳在周期性径向点载荷和轴向静载荷作用下的非线性横向动力响应。施加的部分边缘载荷用傅立叶级数表示,并且通过解决面内弹性问题来计算圆柱壳内的精确预屈曲应力分布。 Donnell的壳理论结合了一阶剪切变形,面内和旋转惯性,用于建模圆柱壳。 Galerkin方法用于将控制性偏微分方程简化为一组非线性常微分方程。使用增量谐波平衡(IHB)方法求解这些方程,以获得自由振动和强制振动的频率-振幅响应。数值结果说明了层数,静态局部预载和初始几何缺陷对叠层复合圆柱壳非线性强迫振动的影响。 (C)2016 Elsevier Ltd.保留所有权利。

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