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Accurate natural frequencies and critical speeds of a rotating functionally graded moderately thick cylindrical shell

机译:旋转的功能梯度中等厚度的圆柱壳的准确固有频率和临界速度

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摘要

This paper presents an exact analytical solution for free vibration of a rotating functionally graded circular cylindrical shell based on Sanders shear deformation theory. The state space method is employed to solve the problem. The equations of motion are extracted by considering Coriolis, centrifugal and initial hoop tension effects. Several comparison studies with results reported in literature as well as a finite element model are carried out, to demonstrate accuracy of the present new exact results. Effects of various combinations of boundary conditions, rotational speed, geometrical and material properties of the shell on the forward and backward waves of the natural frequencies are investigated. Also, variations of the critical speed versus material properties are discussed. Due to the inherent features of the present exact solution, the present findings will be a useful benchmark for evaluating the accuracy of other analytical and numerical methods and can be utilized as a reliable reference by the other researchers.
机译:本文基于桑德斯剪切变形理论,给出了旋转的功能梯度圆柱壳自由振动的精确解析解。使用状态空间方法解决该问题。通过考虑科里奥利,离心力和初始环向张力效应来提取运动方程。进行了数项比较研究,并结合文献报道的结果以及有限元模型,以证明当前新的精确结果的准确性。研究了边界条件,转速,壳的几何和材料特性的各种组合对固有频率的前进和后退波的影响。此外,还讨论了临界速度与材料性能的关系。由于本精确解决方案的固有特征,本研究结果将成为评估其他分析和数值方法的准确性的有用基准,并且可以被其他研究人员用作可靠的参考。

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