A Multi-Point Iterative Analysis Method for Vibration Control of a Steering Wheel at Idle Speed

Steering wheel vibration control is of great significance to improve the ride comfort of vehicles. However, the coupling effect of the multi-source vibration transfer path makes it difficult to screen out the abnormal vibration transfer intervals. Therefore, a multi-point iterative analysis method (...

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Main Authors: Shuilong He, Tao Tang, Mingsong Ye, Enyong Xu, Zhansi Jiang
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8754779/
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spelling doaj-e42b0dc6001441a9a90f69874018ead82021-03-29T23:34:59ZengIEEEIEEE Access2169-35362019-01-017883998841710.1109/ACCESS.2019.29265228754779A Multi-Point Iterative Analysis Method for Vibration Control of a Steering Wheel at Idle SpeedShuilong He0https://orcid.org/0000-0003-0139-0461Tao Tang1Mingsong Ye2Enyong Xu3Zhansi Jiang4School of Mechanical and Electrical Engineering, Guilin University of Electronic Technology, Guilin, ChinaSchool of Mechanical and Electrical Engineering, Guilin University of Electronic Technology, Guilin, ChinaDongfeng Liuzhou Motor Company, Ltd., Liuzhou, ChinaDongfeng Liuzhou Motor Company, Ltd., Liuzhou, ChinaSchool of Mechanical and Electrical Engineering, Guilin University of Electronic Technology, Guilin, ChinaSteering wheel vibration control is of great significance to improve the ride comfort of vehicles. However, the coupling effect of the multi-source vibration transfer path makes it difficult to screen out the abnormal vibration transfer intervals. Therefore, a multi-point iterative analysis method (MIAM) is presented in this paper. In addition, this paper researches the characteristics of the main vibration transmission path of a truck and proposes a new vibration isolation structure. Considering the structural characteristics of the modal deformation of the car body, the installation orientation of the measuring point is further adjusted according to the area formed by modal deformation nodes, and a simplified vibration transfer path is presented. After weighing the vibration data of the sensor and considering the vibration transfer rate as the analysis index, the abnormal interval of vibration transmission on the main path was detected. The effectiveness of the improved structure is verified with the modal verification analysis of an extracted steering system model. In addition, the experimental results show that the improved measures reduce the total vibration of the steering wheel by 34% and offsets the peak corresponding frequency by 4.8%, showing the effectiveness of the proposed method and proving its advantages for other vibration control problems.https://ieeexplore.ieee.org/document/8754779/MIAMextracted steering system modelnew vibration isolation structuresimplified vibration transfer pathmodal verification analysis
collection DOAJ
language English
format Article
sources DOAJ
author Shuilong He
Tao Tang
Mingsong Ye
Enyong Xu
Zhansi Jiang
spellingShingle Shuilong He
Tao Tang
Mingsong Ye
Enyong Xu
Zhansi Jiang
A Multi-Point Iterative Analysis Method for Vibration Control of a Steering Wheel at Idle Speed
IEEE Access
MIAM
extracted steering system model
new vibration isolation structure
simplified vibration transfer path
modal verification analysis
author_facet Shuilong He
Tao Tang
Mingsong Ye
Enyong Xu
Zhansi Jiang
author_sort Shuilong He
title A Multi-Point Iterative Analysis Method for Vibration Control of a Steering Wheel at Idle Speed
title_short A Multi-Point Iterative Analysis Method for Vibration Control of a Steering Wheel at Idle Speed
title_full A Multi-Point Iterative Analysis Method for Vibration Control of a Steering Wheel at Idle Speed
title_fullStr A Multi-Point Iterative Analysis Method for Vibration Control of a Steering Wheel at Idle Speed
title_full_unstemmed A Multi-Point Iterative Analysis Method for Vibration Control of a Steering Wheel at Idle Speed
title_sort multi-point iterative analysis method for vibration control of a steering wheel at idle speed
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2019-01-01
description Steering wheel vibration control is of great significance to improve the ride comfort of vehicles. However, the coupling effect of the multi-source vibration transfer path makes it difficult to screen out the abnormal vibration transfer intervals. Therefore, a multi-point iterative analysis method (MIAM) is presented in this paper. In addition, this paper researches the characteristics of the main vibration transmission path of a truck and proposes a new vibration isolation structure. Considering the structural characteristics of the modal deformation of the car body, the installation orientation of the measuring point is further adjusted according to the area formed by modal deformation nodes, and a simplified vibration transfer path is presented. After weighing the vibration data of the sensor and considering the vibration transfer rate as the analysis index, the abnormal interval of vibration transmission on the main path was detected. The effectiveness of the improved structure is verified with the modal verification analysis of an extracted steering system model. In addition, the experimental results show that the improved measures reduce the total vibration of the steering wheel by 34% and offsets the peak corresponding frequency by 4.8%, showing the effectiveness of the proposed method and proving its advantages for other vibration control problems.
topic MIAM
extracted steering system model
new vibration isolation structure
simplified vibration transfer path
modal verification analysis
url https://ieeexplore.ieee.org/document/8754779/
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