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Traveling wave analysis of rotating cross-ply laminated cylindrical shells with arbitrary boundaries conditions via Rayleigh-Ritz method

机译:瑞利-里兹法在任意边界条件下旋转交叉层压圆柱壳的行波分析

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This paper presents the analysis on free vibration of rotating cross-ply laminated circular cylindrical shells under arbitrary elastic boundary conditions via Rayleigh Ritz method. Based on the Donnel's shell theory, the energy equations of the composite shell which take into account of initial hoop tension, centrifugal and Coriolis forces are derived. By employing a set of orthogonal polynomials as the admissible function, the Rayleigh Ritz method is used to formulate the equations of motion of the rotating composite cylindrical shell with traditional boundary conditions. Then, the assumed elastic springs applying on boundaries of the shell are employed to simulate the arbitrary elastic supports of the rotating composite shells, which contribute the total system energy as elastic spring potential energy. Further, some numerical examples are presented to confirm the influence of variations elastic boundary conditions and lamination schemes on the frequency of rotating composite cylinders. The current strategy is excellent to investigate the traveling waves of rotating composite shell with various boundaries including the classical constrains, elastic cases and the combinations of them availably and accurately. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文通过瑞利·里兹(Rayleigh Ritz)方法,对任意弹性边界条件下旋转交叉层合层压圆柱壳的自由振动进行了分析。基于Donnel壳理论,推导了考虑初始环向拉力,离心力和科里奥利力的复合材料壳的能量方程。通过采用一组正交多项式作为允许函数,使用瑞利·里兹(Rayleigh Ritz)方法来公式化具有传统边界条件的旋转复合圆柱壳的运动方程。然后,将假定的弹性弹簧施加到壳体的边界上,以模拟旋转复合壳体的任意弹性支撑,该弹性支撑将总系统能量贡献为弹性弹簧势能。此外,还提供了一些数值示例来确认变化的弹性边界条件和层压方案对旋转复合材料圆柱体的频率的影响。当前的策略非常适合研究具有各种边界的旋转复合材料壳的行波,包括经典约束,弹性情况以及它们的组合。 (C)2015 Elsevier Ltd.保留所有权利。

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