Analysis of nonlinear vibration characteristics of dual-rotor system under bearing misalignment-rub-coupling fault

In order to reveal the vibration characteristics of fault rotor systems caused by the bearing misalignment, the expression of the rotor deflection displacement under the bearing misalignment was derived through the coordinate transformation relation. On this basis, the dynamic model of the double di...

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Main Authors: NIE YanChun, YU JianHui, ZHANG LeiKe, WANG XueNi, ZHANG JinJian, TANG HuaLin
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Strength 2024-06-01
Series:Jixie qiangdu
Subjects:
Online Access:http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2024.03.002
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author NIE YanChun
YU JianHui
ZHANG LeiKe
WANG XueNi
ZHANG JinJian
TANG HuaLin
author_facet NIE YanChun
YU JianHui
ZHANG LeiKe
WANG XueNi
ZHANG JinJian
TANG HuaLin
author_sort NIE YanChun
collection DOAJ
description In order to reveal the vibration characteristics of fault rotor systems caused by the bearing misalignment, the expression of the rotor deflection displacement under the bearing misalignment was derived through the coordinate transformation relation. On this basis, the dynamic model of the double disk rotor system with the coupled bearing misalignment-rub-impact fault, considering the influence of external excitation including the rub-impact force and the oil film force was established. The effects of rotational speed and mass eccentricity on the dynamic response of the system were studied by means of the numerical method. The results show that the bearing misalignment fault can increase the possibility of rub-impact, worsen the shafting vibration and magnify the unsteady motion range of system. Although the addition of misalignment can delay the instability movement induced by parameter changes to a certain extent, the enlargement of amplitude is contrary to the safe operation goal for system, therefore, the necessary measures should be taken to control the bearing misalignment fault. The relevant conclusions can provide useful references for the vibration state identification and the stability analysis of rotor bearing systems.
format Article
id doaj-art-51a0956251ea4ecda47962c7748c7e7d
institution Kabale University
issn 1001-9669
language zho
publishDate 2024-06-01
publisher Editorial Office of Journal of Mechanical Strength
record_format Article
series Jixie qiangdu
spelling doaj-art-51a0956251ea4ecda47962c7748c7e7d2025-01-15T02:45:28ZzhoEditorial Office of Journal of Mechanical StrengthJixie qiangdu1001-96692024-06-014651852663938906Analysis of nonlinear vibration characteristics of dual-rotor system under bearing misalignment-rub-coupling faultNIE YanChunYU JianHuiZHANG LeiKeWANG XueNiZHANG JinJianTANG HuaLinIn order to reveal the vibration characteristics of fault rotor systems caused by the bearing misalignment, the expression of the rotor deflection displacement under the bearing misalignment was derived through the coordinate transformation relation. On this basis, the dynamic model of the double disk rotor system with the coupled bearing misalignment-rub-impact fault, considering the influence of external excitation including the rub-impact force and the oil film force was established. The effects of rotational speed and mass eccentricity on the dynamic response of the system were studied by means of the numerical method. The results show that the bearing misalignment fault can increase the possibility of rub-impact, worsen the shafting vibration and magnify the unsteady motion range of system. Although the addition of misalignment can delay the instability movement induced by parameter changes to a certain extent, the enlargement of amplitude is contrary to the safe operation goal for system, therefore, the necessary measures should be taken to control the bearing misalignment fault. The relevant conclusions can provide useful references for the vibration state identification and the stability analysis of rotor bearing systems.http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2024.03.002Rotor-bearing systemBearing misalignmentRub-impactDeflection
spellingShingle NIE YanChun
YU JianHui
ZHANG LeiKe
WANG XueNi
ZHANG JinJian
TANG HuaLin
Analysis of nonlinear vibration characteristics of dual-rotor system under bearing misalignment-rub-coupling fault
Jixie qiangdu
Rotor-bearing system
Bearing misalignment
Rub-impact
Deflection
title Analysis of nonlinear vibration characteristics of dual-rotor system under bearing misalignment-rub-coupling fault
title_full Analysis of nonlinear vibration characteristics of dual-rotor system under bearing misalignment-rub-coupling fault
title_fullStr Analysis of nonlinear vibration characteristics of dual-rotor system under bearing misalignment-rub-coupling fault
title_full_unstemmed Analysis of nonlinear vibration characteristics of dual-rotor system under bearing misalignment-rub-coupling fault
title_short Analysis of nonlinear vibration characteristics of dual-rotor system under bearing misalignment-rub-coupling fault
title_sort analysis of nonlinear vibration characteristics of dual rotor system under bearing misalignment rub coupling fault
topic Rotor-bearing system
Bearing misalignment
Rub-impact
Deflection
url http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2024.03.002
work_keys_str_mv AT nieyanchun analysisofnonlinearvibrationcharacteristicsofdualrotorsystemunderbearingmisalignmentrubcouplingfault
AT yujianhui analysisofnonlinearvibrationcharacteristicsofdualrotorsystemunderbearingmisalignmentrubcouplingfault
AT zhangleike analysisofnonlinearvibrationcharacteristicsofdualrotorsystemunderbearingmisalignmentrubcouplingfault
AT wangxueni analysisofnonlinearvibrationcharacteristicsofdualrotorsystemunderbearingmisalignmentrubcouplingfault
AT zhangjinjian analysisofnonlinearvibrationcharacteristicsofdualrotorsystemunderbearingmisalignmentrubcouplingfault
AT tanghualin analysisofnonlinearvibrationcharacteristicsofdualrotorsystemunderbearingmisalignmentrubcouplingfault