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Non-linear Dynamics of a Flexible Multi-rotor Bearing System With a Fault of Parallel Misalignment

机译:具有平行未对准故障的柔性多转子轴承系统的非线性动力学

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The dynamic behaviors of a flexible multi-rotor system with a fault of parallel misalignment are investigated on the basis of assumptions, such as the long journal bearings, small rotor misalignment and mass disk unbalance. Firstly, based on the Lagrange equations with undetermined multiplier, the dynamic model of a rotor system under the action of the nonlinear oil film forces is developed after taking into account the holonomic constraint, which describes the misalignment relation between two rotors, and the theoretical analysis reveals that the system with eleven DOF is of strong nonlinear properties. Then the nonlinear dynamic characteristics on numerical technique, such as steady state response, rotor orbit, Poincare section and the largest Lyapunov exponent, are paid more attention in this study. The results show that at low speed the components of the steady-state responses in lateral direction is of the synchronous frequency with rotating speed as well as its integer multiples frequencies. As the speed increases the dynamic characteristics become complicated, and the nT-period, quasi-period and chaotic oscillations occur.
机译:基于假设的假设研究了具有平行未对准的具有故障的柔性多转子系统的动态行为,例如长轴颈轴承,小转子未对准和质量盘不平衡。首先,基于具有未确定乘法器的拉格朗日方程,在考虑到定期约束之后开发了在非线性油膜力的动作下的转子系统的动态模型,这描述了两个转子之间的错位关系和理论分析揭示了具有11家DOF的系统具有强烈的非线性性能。然后,数值技术的非线性动态特性,如稳态响应,转子轨道,庞纳罗部分和最大的Lyapunov指数,在这项研究中得到更多关注。结果表明,在低速下,横向方向上稳态响应的组件具有旋转速度的同步频率以及其整数倍率频率。随着速度增加动态特性变得复杂,并且发生了NT周期,准周期和混沌振荡。

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