径向动压浮环轴承-转子系统多稳定区域研究

郭 红1,张直明2,张绍林1,岑少起1

振动与冲击 ›› 2016, Vol. 35 ›› Issue (2) : 168-172.

PDF(1536 KB)
PDF(1536 KB)
振动与冲击 ›› 2016, Vol. 35 ›› Issue (2) : 168-172.
论文

径向动压浮环轴承-转子系统多稳定区域研究

  • 郭    红1,张直明2,张绍林1,岑少起1
作者信息 +

Study on multi stable regions of journal hydrodynamic floating ring bearing-rotor system

  • GUO Hong1,ZHANG Zhi-ming2,ZHANG Shao-lin1,CEN Shao-qi1
Author information +
文章历史 +

摘要

以径向动压浮环轴承为研究对象,针对轴颈、浮环建立统一的动力学方程,用Routh-Hurwitz准则给出单质量刚性对称浮环轴承-转子系统稳定性判据。用有限差分计算某高速径向动压浮环轴承刚度、阻尼系数,获得不同工况下系统稳定性曲线。结果表明,小偏心率下系统升速过程中呈现多个稳定区域,且随偏心率、内外膜半径间隙变化而变化。油膜温度变化亦会影响系统稳定性。为高速浮环轴承稳定性整体建模、分析提供借鉴。

Abstract

The unitized dynamics model of journal and floating ring for a journal hydrodynamic floating ring bearing was established. The stability criterion of the journal floating ring bearing was obtained using Routh-Hurwitz method. The stiffness and damping coefficients under different operation conditons for this journal hydrodynamic floating ring bearing were calculated with finite difference method. On this base the judgment factors of stability criterion was acquired. The results show that floating ring bearing has multi stable regions under small eccentricity. At the same time, stable regions change with the eccentricity, radial clearance and lubricant temperature. The research fruits have great value in the model integrality and stability analyse of journal floating hybrid bearing.

关键词

径向浮环轴承 / 刚度 / 阻尼 / 失稳转速 / 稳定区域

Key words

journal floating ring bearing / threshold speed / multi stable regions

引用本文

导出引用
郭 红1,张直明2,张绍林1,岑少起1. 径向动压浮环轴承-转子系统多稳定区域研究[J]. 振动与冲击, 2016, 35(2): 168-172
GUO Hong1,ZHANG Zhi-ming2,ZHANG Shao-lin1,CEN Shao-qi1. Study on multi stable regions of journal hydrodynamic floating ring bearing-rotor system[J]. Journal of Vibration and Shock, 2016, 35(2): 168-172

参考文献

[1] 万召, 孟光, 荆建平, 等. 燃气轮机转子-轴承系统的油膜涡动分析[J]. 振动与冲击, 2011, 30(3): 38-41.
WAN Zhao, MENG Guang, JING Jian-ping, et al. Analysis on oil whirl of gas turbine rotor-bearing system[J]. Journal of Vibration and Shock, 2011, 30(3): 38-41.
[2] 杨金福,杨昆, 付忠广, 等. 转子滑动轴承系统中油膜谐波振荡过程的试验研究[J]. 燃气涡轮试验与研究, 2007, 20(3): 42-47.
YANG Jin-fu, YANG Kun, FU Zhong-guang, et al. Experimental rearch on the harmonic oil whip in sliding bearing-rotor system[J]. Gas Turbine Experiment and Research, 2007, 20(3): 42-47.
[3] Chen W J. Rotordynamics and bearing design of turbochargers[J]. Mechanical Systems and Signal Processing, 2012,29:77-89.
[4] Guo H, Lai X M, Wu X L, et al. Performance of flat capillary compensated deep/shallow pockets hydrostatic/ hydrodynamic journal-thrust floating ring bearing[J]. Tribology Transcations, 2009, 52(2): 204-212.
[5] 郭红,张直明,岑少起,等. 径向浮环动静压轴承稳定性研究[J]. 振动与冲击, 2012,31(17): 17-21.
        GUO Hong, ZHANG Zhi-ming, CEN Shao-qi, et al. Stability of journal floating ring hybrid bearing[J]. Journal of Vibration and Shock, 2012, 31(17): 17-21.
[6] Tian L,Wang W J, Peng Z J. Nonlinear effects of unbalance in the rotor-floating ring bearing system of turbochargers [J]. Mechanical Systems and Signal Processing, 2013,34: 298-320.
[7] Tian L,Wang W J, Peng Z J. Dynamic behaviours of a full floating ring bearing supported turbocharger rotor with engine excitation[J].Journal of Sound and Vibration, 2011, 330:4851-4874.
[8] Tian L,Wang W J, Peng Z J. Effects of bearing outer clearance on the dynamic behaviours of the full floating ring bearing supported turbocharge rotor[J]. Mechanical System and Signal Processing, 2012, 31:155-175.
[9] Amamou A, Chouchane M.Non-linear stability analysis of floating ring bearings using Hopf bifurcation theory[J]. Journal of Mechanical Engineering Science,2011,225(12): 2804-2818.
[10] Andrés L S, Barbarie V, Bhattacharya A,et al. On the effect of thermal energy transport to the performance of (semi) floating ring bearing systems for automotive turbochargers [J].Journal of Engineering for Gas Turbines and Power, 2012, 134(10): 561-570.
[11] 郭增林,杨益华. 滑动轴承转子系统多稳定区形态特性研究[J]. 机械强度, 2001, 23(2): 138-140.
       GUO Zeng-lin, YANG Yi-hua. Study on pattern characteristics of multi stable regions of hydrodynamic bearing-rotor system[J]. Journal of Mechanical Strength, 2001, 23(2): 138-140.

PDF(1536 KB)

Accesses

Citation

Detail

段落导航
相关文章

/