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Vibration response characteristics of a dual-rotor with unbalance-misalignment coupling faults: Theoretical analysis and experimental study

机译:不平衡失值耦合故障双转子的振动响应特性:理论分析与实验研究

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In order to improve energy efficiency and compact structure, the dual-rotor structure, with low-pressure rotor and high-pressure rotor, has been widely used in aero-engines. In severe operation conditions, the high rotating speed dual-rotor structure is vulnerable to some faults, such as misalignment, which may cause strong vibration and even catastrophic accidents. Perfect balance of the dual-rotor system cannot be obtained in practice, and some amount of unbalance is almost always present. The rotors' centrelines are not co-linear in the couplings and the rotors run in improper axial positions in a dual-rotor system. The differential equations of rotor system is derived by using modern nonlinear dynamics and dual-rotor dynamics principles. The governing equations of the dual-rotor system with unbalance-misalignment coupling faults are solved numerically by the Runge-Kutta method. The complicated vibration responses influenced by different rotational angular speeds, mass eccentricity, misalignment angle and parallel misalignment are analyzed by the cascade plot, time waveform and frequency spectrum. Second harmonic frequency and rotational frequency components of dual rotors are observed. To verify the validity of the dual-rotor system dynamic model, the unbalance-misalignment coupling faults are carried out on a dual-rotor test rig by adjusting the height and quantity of gaskets and installing a screw on the disk of the inner rotor. The simulation results are found to agree with the experimental results. These results provide important theoretical and engineering references for the safe operation of dual-rotor system and the exact identification of coupling faults. (C) 2018 Elsevier Ltd. All rights reserved.
机译:为了提高能量效率和紧凑的结构,具有低压转子和高压转子的双转子结构已广泛应用于航空发动机。在严重的操作条件下,高旋转速度双转子结构容易受到一些故障的影响,例如未对准,这可能导致强烈的振动甚至灾难性的事故。在实践中不能获得双转子系统的完美平衡,并且几乎总是存在一定量的不平衡。转子的Centrelines在联轴器中不连结,转子在双转子系统中运行不正确的轴向位置。转子系统的微分方程是通过使用现代非线性动力学和双转子动力学原理来源的。通过跳动-Kutta方法在数值上进行了不平衡耦合断层的双转子系统的控制方程。通过级联绘图,时间波形和频谱分析了由不同旋转角速度,质量偏心,未对准角度和平行未对准的复杂振动响应。观察到双转子的二次谐波频率和旋转频率分量。为了验证双转子系统动态模型的有效性,通过调节垫圈的高度和数量并在内转子的盘上安装螺钉,在双转子测试装置上进行不平衡的错位耦合故障。发现仿真结果与实验结果一致。这些结果为双转子系统的安全运行提供了重要的理论和工程参考,以及耦合断层的确切识别。 (c)2018年elestvier有限公司保留所有权利。

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