Authors | Hassan Afshari, Mohsen Irani, Keivan Torabi |
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Journal | Modares Mechanical Engineering |
Paper Type | Full Paper |
Published At | ۲۰۱۴ |
Journal Grade | ISI |
Journal Type | Typographic |
Journal Country | Iran, Islamic Republic Of |
Abstract
In this paper, differential quadrature element method (DQEM) is used to analyze the free transverse vibration of multi-stepped rotors resting on multiple bearings. In order to increase the accuracy of the model, Timoshenko beam theory is used; also in order to generalization of the modeling of the bearings, each bearing is replaced with four springs; two translational and two rotational acting on two perpendicular directions. Governing equations, compatibility conditions at the each step and each bearing and external boundary conditions are derived and formulated by the differential quadrature rules. First, convergence and versatility of the proposed method are tested by the presented exact solutions. Then, the Campbell diagram is derived for a desired case study and variation of natural frequencies is investigated versus angular velocity of spin. The most advantage of the proposed method is being less time-consuming in comparison with the other methods, especially for cases with high number of steps and bearings which are unsolvable by exact methods.