挤压油膜阻尼器同心度及碰摩对转子振动特性的影响

李岩,廖明夫,王四季,赵清周,赵璐

振动与冲击 ›› 2020, Vol. 39 ›› Issue (1) : 150-168.

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振动与冲击 ›› 2020, Vol. 39 ›› Issue (1) : 150-168.
论文

挤压油膜阻尼器同心度及碰摩对转子振动特性的影响

  • 李岩,廖明夫,王四季,赵清周,赵璐
作者信息 +

Effects of squeeze film damper concentricity and rubbing on rotor vibration characteristics

  • LI Yan, LIAO Mingfu, WANG Siji, ZHAO Qingzhou, ZHAO Lu
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摘要

为了探明挤压油膜阻尼器存在不同心度以及碰摩故障时转子系统的振动特性,建立了带挤压油膜阻尼器的转子系统动力学模型,考虑了阻尼器不同心度以及油膜环碰摩故障等因素,并搭建实验器系统进行了实验验证。理论分析与实验结果表明,转子涡动半径越大,阻尼器的安装不同心度对转子振动影响越强;挤压油膜阻尼器不同心度越大,转子振动幅值越小,但非线性振动风险迅速增加;阻尼器偏心比过大时油膜内、外环可能发生碰摩,激起转子反进动固有频率,且振动幅值表现出剧烈波动现象。

Abstract

In order to investigate vibration characteristics of a rotor system during its squeeze film dampers (SFDs) having assembly non-concentricity and rubbing fault, the dynamic model of the rotor system with SFDs was established considering SFDs’ assembly non-concentricity and rubbing fault. Its test model was built and used to conduct test verification. Theoretical analysis and test results showed that the lager the rotor whirl radius, the stronger the effects of SFD’s assembly non-concentricity on rotor vibration; the larger the SFD’s assembly non-concentricity, the smaller the rotor vibration amplitude, but the rotor system’s non-linear vibration risk increases rapidly; when eccentric ratio of SFD is too big, inner and outer races of oil film may have rubbingto excite the rotor’s reverse precession natural frequency, and the rotor’s vibration amplitude fluctuates violently.

关键词

转子 / 挤压油膜阻尼器 / 动力学模型 / 振动响应 / 装配不同心度

Key words

rotor / squeeze film damper (SFD) / dynamic model / vibration response / assembly non-concentricity

引用本文

导出引用
李岩,廖明夫,王四季,赵清周,赵璐. 挤压油膜阻尼器同心度及碰摩对转子振动特性的影响[J]. 振动与冲击, 2020, 39(1): 150-168
LI Yan, LIAO Mingfu, WANG Siji, ZHAO Qingzhou, ZHAO Lu. Effects of squeeze film damper concentricity and rubbing on rotor vibration characteristics[J]. Journal of Vibration and Shock, 2020, 39(1): 150-168

参考文献

 [1] 刘展翅, 廖明夫, 丛佩红, 等. 挤压油膜阻尼器非线性特性实验研究[J]. 机械科学与技术, 2016, 35(01):1-6.
LIU Zhanchi, LIAO Mingfu, CONG Peihong, et al. Experimental investigation of a rotor bearing system with non-linear squeeze film damper[J]. Mechanical Science and Technology for Aerospace Engineering, 2016,35(01):1-6.
[2] 刘占生, 张敏, 徐方程, 等. 基于两端开口的有限长挤压油膜阻尼器的试验研究[J]. 振动与冲击, 2012,31(18):137-142.
LIU Zhansheng, ZHANG Min, XU Fangcheng, et al. Test for an open-ended finite length cylindrical aqueeze film damper[J]. Journal of Vibration and Shock, 2012,31(18):137-142.
[3] 祝长生, 毛川, 李鹏飞. 同心与非同心型挤压油膜阻尼器减振能力的实验比较[J]. 航空动力学报, 2017,32(11):2672-2679.
ZHU Changsheng, MAO Chuan, LI Pengfei. Experimental comparison of vibration isolation cbility of centralized and uncentralized squeeze film damper[J]. Journal of Aerospace Power, 2017,32(11):2672-2679.
[4] 桑潇潇, 廖明夫, 李为. 故障转子挤压油膜阻尼器减振特性实验[J]. 振动、测试与诊断, 2015,35(5):977-980.
SANG Xiaoxiao, LIAO Mingfu ,LI Wei. Experimantal study on the damping performance of squeeze film damper in rotor with faults[J]. Journal of Vibration Measurement and Diagnosis, 2015,35(5):977-980.
[5] Gunter E J, Barrett L E, Allaire P E. Design of nonlinear squeeze-film dampers for aircraft engines[J]. Journal of Tribology, 1977,99(1):142-142.
[6] 刘展翅, 廖明夫, 丛佩红, 等. 航空发动机转子挤压油膜阻尼器设计方法[J]. 航空动力学报, 2015,30(11):2762-2770.
LIU Zhanchi, LIAO Mingfu, CONG Peihong, et al. Design method of squeeze film damper for aero-engine rotors[J]. Journal of Aerospace Power, 2015,30(11):2762-2770.
[7] 林富生, 张韬, 孟光. 挤压油膜阻尼器-碰摩转子系统的非线性特性研究[J]. 振动与冲击, 2004,23(1):12-16.
LIN Fu-sheng, ZHANG Tao, MENG Guang. Nonlinear characteristics of the rub-impact response of a rotor system supported on squeeze film dampers[J]. Journal of Vibration and Shock, 2004,23(1):12-16.
[8] 张俊红, 马梁, 鲁鑫, 等. 机动飞行下挤压油膜阻尼器对碰摩故障转子系统的影响[J]. 西安交通大学学报, 2015,49(11):62-70.
ZHANG Junhong, MA Liang, LU Xin, et al. Effect of squeeze film damper on rotor system with rub-impact fault under maneuvering flight conditions[J]. Journal of Xi'an Jiaotong University, 2015,49(11):62-70.
[9] 王俊, 马梁, 张俊红, 等. SFD作用下故障转子系统动力学特性及混沌控制[J]. 振动测试与诊断, 2016,36(3):541-548.
WANG Jun, MA Liang, ZHANG Junhong, et al. Dynamic characteristics and chaos control of rotor system with faults under squeeze film damper[J]. Journal of Vibration Measurement and Diagnosis, 2016,36(3):541-548.
[10] Zeidan F, Vance J. Cavitation regimes in squeeze film dampers and their effect on the pressure distribution[J]. A S L E Transactions, 1990,33(3):447-453.
[11] Shiau T N, Wang C R, Liu D S, et al. Nonlinear dynamic study on effects of rub-impact caused by oil-rupture in a multi-shafts turbine with a squeeze film damper[C]// ASME Turbo Expo 2014: Turbine Technical Conference and Exposition. Düsseldorf: ASME, 2014: V07AT31A036.
[12] ZHANG Wei, HAN Bingbing, ZHANG Kunpeng, et al. Dynamic analysis of a rotor system supported on squeeze film damper with air entrainment[J]. International Journal of Bifurcation & Chaos, 2018,27(14):1750212.
[13] 刘展翅, 廖明夫, 丛佩红, 等. 静偏心对挤压油膜阻尼器减振特性影响实验研究[J]. 推进技术, 2016,37(8):1560-1568.
LIU Zhanchi, LIAO Mingfu, CONG Peihong, et al. Experimental investigation for effects of static eccentricity on vibration attenuating charateristics of squeeze film damper[J]. Journal of Propulsion Technology, 2016,37(8):1560-1568.
[14] 郭旭民, 孙祺, 马辉, 等. 旋转叶片-柔性机匣碰摩振动响应分析[J]. 振动与冲击, 2019,38(5):162-168.
GUO Xumin, SUN Qi, MA Hui, et al. Rub vibration responses of rotating blade and flexible case[J]. Journal of Vibration and Shock, 2019,38(5):162-168.
[15] 马辉, 孙祺, 太兴宇, 等. 旋转叶片-机匣碰摩振动响应分析[J]. 振动与冲击, 2017,36(14):26-32.
MA Hui, SUN Qi, TAI Xingyu, et al. Vibration response analysis on the rotating blade-casing rubbing[J]. Journal of Vibration and Shock, 2017,36(14):26-32.
[16] 廖明夫, 宋明波, 张霞妹. 转子/机匣碰摩引起的转子弯扭耦合振动[J]. 振动、测试与诊断, 2016,36(5):1009-1017.
LIAO Mingfu, SONG Mingbo, ZHANG Xiamei. Coupled bending and torsional vibration due to rotor-casing cntact[J]. Journal of Vibration Measurement and Diagnosis, 2016,36(5):1009-1017.

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