Rigid-flexible coupling modeling of the dual-rotor system for aero-engine

Pingping Ma, Yuehui Dong, Hangqi Zhao, Yang Li, Muge Liu
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Abstract

The dual-rotor system is the core component of advanced aero-engine. Establishing a reasonable, accurate, and efficient dynamics model is the key to studying the dynamics and vibration of the rotor system for aero-engine. This manuscript takes a representative aircraft engine dual-rotor system as a prototype, considers the rig-id-flexible coupling characteristics of different stiffness elastic supports and rotor structures, and establishes an analytical dynamic model of the dual-rotor system. Based on the established dynamic model, the natural char-acteristics of the dual-rotor system are analyzed. The model was validated using two different research methods: the rigid-flexible coupling multi-body system dynamics simulation platform ADAMS, and finite element analy-sis. The dynamic model of the dual-rotor system established in this paper can meet the requirements of hierar-chical rigid-flexible coupling of system and structure, overall mass distribution, and stiffness distribution. In particular, it can also effectively realize the simulation of multi-facet and multi-phase unbalanced vibration of the rotor system. The research methods of this paper can further enrich the basic theory of dynamics and vibration of the aero-engine rotor system.
航空发动机双旋翼系统刚柔耦合建模
双旋翼系统是先进航空发动机的核心部件。建立合理、准确、高效的动力学模型是研究航空发动机转子系统动力学与振动的关键。本文以某具有代表性的航空发动机双旋翼系统为原型,考虑不同刚度弹性支承和旋翼结构的刚柔耦合特性,建立了双旋翼系统的解析动力学模型。在建立的动力学模型的基础上,分析了双转子系统的自然特性。采用刚柔耦合多体系统动力学仿真平台ADAMS和有限元分析两种不同的研究方法对模型进行了验证。本文建立的双转子系统动力学模型能够满足系统与结构的层次化学刚柔耦合、整体质量分布和刚度分布的要求。特别是,它还可以有效地实现转子系统多面、多相不平衡振动的仿真。本文的研究方法可以进一步丰富航空发动机转子系统动力学和振动的基础理论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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