Self-excited vibration of whole vehicle with multiple limit cycles induced by shimmy of front wheels

Front wheel shimmy may induce the self-excited vibration of whole vehicle with multiple limit cycles. This kind of shimmy is difficult to control and can do great harm to the vehicle. In order to obtain the mechanism of this phenomenon, a 7-DOF dynamic model of whole vehicle self-excited vibration i...

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Main Authors: Daogao Wei, Wenhao Zhai, Yingjie Zhu, GenSheng Jiang, Andong Yin, Bingzhan Zhang
Format: Article
Language:English
Published: SAGE Publishing 2020-12-01
Series:Journal of Low Frequency Noise, Vibration and Active Control
Online Access:https://doi.org/10.1177/1461348419855464
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spelling doaj-38c3471927fb4eb68a5cb4f74f2473a12020-12-10T04:04:33ZengSAGE PublishingJournal of Low Frequency Noise, Vibration and Active Control1461-34842048-40462020-12-013910.1177/1461348419855464Self-excited vibration of whole vehicle with multiple limit cycles induced by shimmy of front wheelsDaogao WeiWenhao ZhaiYingjie ZhuGenSheng JiangAndong YinBingzhan ZhangFront wheel shimmy may induce the self-excited vibration of whole vehicle with multiple limit cycles. This kind of shimmy is difficult to control and can do great harm to the vehicle. In order to obtain the mechanism of this phenomenon, a 7-DOF dynamic model of whole vehicle self-excited vibration induced by the shimmy of front wheels which take the nonlinear factor of tire lateral force and the dry friction force in suspension and steering system into consideration was established. By using Hopf bifurcation theorem and central manifold theorem, the existence and stability of limit cycles are qualitatively determined. By means of numerical analysis, the self-excited vibration with multiple limit cycles is found. The results show that in the speed range of 50–185 km/h, front wheels shimmy induced the self-excited vibration of whole vehicle and the amplitude of system’s vibration decreases with the increase of vehicle speed; in the speed range of 50–83 km/h and 149–185 km/h, the self-excited vibration with multiple limit cycles occurs; in the speed range of 83–149 km/h, the self-excited vibration with single limit cycle occurs.https://doi.org/10.1177/1461348419855464
collection DOAJ
language English
format Article
sources DOAJ
author Daogao Wei
Wenhao Zhai
Yingjie Zhu
GenSheng Jiang
Andong Yin
Bingzhan Zhang
spellingShingle Daogao Wei
Wenhao Zhai
Yingjie Zhu
GenSheng Jiang
Andong Yin
Bingzhan Zhang
Self-excited vibration of whole vehicle with multiple limit cycles induced by shimmy of front wheels
Journal of Low Frequency Noise, Vibration and Active Control
author_facet Daogao Wei
Wenhao Zhai
Yingjie Zhu
GenSheng Jiang
Andong Yin
Bingzhan Zhang
author_sort Daogao Wei
title Self-excited vibration of whole vehicle with multiple limit cycles induced by shimmy of front wheels
title_short Self-excited vibration of whole vehicle with multiple limit cycles induced by shimmy of front wheels
title_full Self-excited vibration of whole vehicle with multiple limit cycles induced by shimmy of front wheels
title_fullStr Self-excited vibration of whole vehicle with multiple limit cycles induced by shimmy of front wheels
title_full_unstemmed Self-excited vibration of whole vehicle with multiple limit cycles induced by shimmy of front wheels
title_sort self-excited vibration of whole vehicle with multiple limit cycles induced by shimmy of front wheels
publisher SAGE Publishing
series Journal of Low Frequency Noise, Vibration and Active Control
issn 1461-3484
2048-4046
publishDate 2020-12-01
description Front wheel shimmy may induce the self-excited vibration of whole vehicle with multiple limit cycles. This kind of shimmy is difficult to control and can do great harm to the vehicle. In order to obtain the mechanism of this phenomenon, a 7-DOF dynamic model of whole vehicle self-excited vibration induced by the shimmy of front wheels which take the nonlinear factor of tire lateral force and the dry friction force in suspension and steering system into consideration was established. By using Hopf bifurcation theorem and central manifold theorem, the existence and stability of limit cycles are qualitatively determined. By means of numerical analysis, the self-excited vibration with multiple limit cycles is found. The results show that in the speed range of 50–185 km/h, front wheels shimmy induced the self-excited vibration of whole vehicle and the amplitude of system’s vibration decreases with the increase of vehicle speed; in the speed range of 50–83 km/h and 149–185 km/h, the self-excited vibration with multiple limit cycles occurs; in the speed range of 83–149 km/h, the self-excited vibration with single limit cycle occurs.
url https://doi.org/10.1177/1461348419855464
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