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Nonlinear vibrations of a dual-rotor-bearing-coupling misalignment system with blade-casing rubbing

机译:具有叶片套管摩擦的双转子轴承耦合未对准系统的非线性振动

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In order to reveal the nonlinear vibration characteristics of an actual dual-rotor-aeroengine with blade-casing rubbing, a dual-rotor-bearing-coupling misalignment system with blade-casing rubbing are investigated based on numerical simulation and experimental measurement in this paper. A dual-rotor experimental rig is designed and manufactured, that is a simplified structure according a dual-rotor-aero-engine. The dynamic model of the dual- rotor-bearing system of the test rig is established based on the finite element method (FEM) taking into account the coupling misalignment, blade-casing rubbing and the nonlinearities of all of the supporting rolling element bearings. The component mode synthesis (CMS) method is applied to the model order reduction of the high-degrees of freedom (D0Fs) dynamic model. The numerical and experimental nonlinear vibration responses of the dual-rotor system are compared with each other at different rotational speeds at different rotational speed ratios. The numerical results are in agreement with the experiment. These results reveal the nonlinear vibration characteristics of the dualrotor-bearing-coupling misalignment system with local blade-casing rubbing fault. (C) 2021 Elsevier Ltd. All rights reserved.
机译:为了揭示实际双转子航空发动机叶片-机匣碰摩时的非线性振动特性,本文在数值模拟和实验测量的基础上,对双转子-轴承耦合失准系统进行了研究。根据双转子航空发动机的结构特点,设计制造了一种简化的双转子试验台。基于有限元法建立了试验台双转子轴承系统的动力学模型,考虑了耦合不对中、叶片-机壳摩擦和所有支承滚动轴承的非线性。将组件模态综合(CMS)方法应用于高自由度(D0Fs)动力学模型的降阶。比较了双转子系统在不同转速、不同转速比下的非线性振动响应。数值计算结果与实验结果一致。这些结果揭示了双转子-轴承耦合不对中系统在局部叶壳碰摩故障下的非线性振动特性。(c)2021爱思唯尔有限公司保留所有权利。

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