基于多体动力学方法的发动机曲轴系全局振动研究

刘佳鑫,顾灿松,袁兆成,杨征睿

车用发动机 ›› 2018, Vol. 0 ›› Issue (6) : 1.

车用发动机 ›› 2018, Vol. 0 ›› Issue (6) : 1. DOI: 10.3969/j.issn.1001-2222.2018.06.001
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基于多体动力学方法的发动机曲轴系全局振动研究

  • 刘佳鑫1,顾灿松1,2,袁兆成1,杨征睿2
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Global Vibration Study of Engine Crankshaft System Based on MultiBody Dynamics

  • LIU Jiaxin1,GU Cansong1,2,YUAN Zhaocheng1,YANG Zhengrui2
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摘要

用结合有限元法(FEM)的多体动力学方法,建立了某三缸机的动力学仿真模型及主轴承弹性液力润滑(EHD)轴承模型,并对曲轴系和发动机机体组合结构进行了约束模态分析,计算得到了曲轴系弯曲及扭转振动的强迫共振频率及振型,重点分析了振动形式较为复杂的弯曲振动和轴系整体振动,探究了轴系共振产生的原因,并进行试验验证。结果表明,引起曲轴系扭转共振的原因是其扭转自由模态,引起弯曲共振和整体振动的是其约束模态及轴系机体组合结构的刚体模态,且轴承约束对扭转模态影响微小,该计算体系与研究结论为发动机曲轴系振动的预测与控制提供了建议和参考。

Abstract

The dynamic simulation model of a threecylinder engine and the elastic hydrodynamic (EHD) lubrication model of main bearing were established using multibody dynamics method combined with finite element method (FEM). Then the constrained mode analysis for the composite structure of crankshaft system and engine body was conducted. The bending and torsional forced resonance frequency and modals of crankshaft system were further calculated and the following analysis focused on the bending vibration and shaft entire vibration that had more complex vibration modes. The experiments were finally conducted. The results show that the cause of crankshaft system torsional vibrations is its free torsional mode and the causes of bending vibration and shaft entire vibration are the constrained mode and the rigid mode of composite structure of crankshaft system  and engine body. The effect of bearing constraint on torsional mode is slight. The research brings the reference for the prediction and control of engine crankshaft system vibration.

关键词

多体动力学 / 弯曲振动 / 约束模态 / 曲轴 / 有限元法

Key words

multi-body dynamics / bending vibration / constrained mode / crankshaft / finite element method

引用本文

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刘佳鑫,顾灿松,袁兆成,杨征睿. 基于多体动力学方法的发动机曲轴系全局振动研究[J]. 车用发动机. 2018, 0(6): 1 https://doi.org/10.3969/j.issn.1001-2222.2018.06.001
LIU Jiaxin,GU Cansong,YUAN Zhaocheng,YANG Zhengrui. Global Vibration Study of Engine Crankshaft System Based on MultiBody Dynamics[J]. Vehicle Engine. 2018, 0(6): 1 https://doi.org/10.3969/j.issn.1001-2222.2018.06.001

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