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Nonlinear vibration of a rotating laminated composite circular cylindrical shell: traveling wave vibration

机译:旋转叠层复合圆柱壳的非线性振动:行波振动

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In this paper, the large-amplitude (geometrically nonlinear) vibrations of rotating, laminated composite circular cylindrical shells subjected to radial harmonic excitation in the neighborhood of the lowest resonances are investigated. Nonlinearities due to large-amplitude shell motion are considered using the Donnell's nonlinear shallow-shell theory, with account taken of the effect of viscous structure damping. The dynamic Young's modulus which varies with vibrational frequency of the laminated composite shell is considered. An improved nonlinear model, which needs not to introduce the Airy stress function, is employed to study the nonlinear forced vibrations of the present shells. The system is discretized by Galerkin's method while a model involving two degrees of freedom, allowing for the traveling wave response of the shell, is adopted. The method of harmonic balance is applied to study the forced vibration responses of the two-degrees-offreedom system. The stability of analytical steady-state solutions is analyzed. Results obtained with analytical method are compared with numerical simulation. The agreement between them bespeaks the validity of the method developed in this paper. The effects of rotating speed and some other parameters on the nonlinear dynamic response of the system are also investigated.
机译:在本文中,研究了旋转的,层压的复合圆柱壳在径向共振附近处于最小共振附近的大振幅(几何非线性)振动。考虑到粘性结构阻尼的影响,使用Donnell的非线性浅壳理论来考虑由于大振幅壳运动引起的非线性。考虑了动态杨氏模量,该杨氏模量随层压复合壳的振动频率而变化。一种改进的非线性模型,不需要引入艾里应力函数,被用来研究当前壳体的非线性强迫振动。该系统通过Galerkin方法离散化,而采用涉及两个自由度的模型,该模型考虑了壳的行波响应。应用谐波平衡法研究了两自由度系统的强迫振动响应。分析了稳态分析溶液的稳定性。将分析方法获得的结果与数值模拟进行比较。他们之间的共识证明了本文开发方法的有效性。还研究了转速和其他一些参数对系统非线性动力响应的影响。

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