Vertical Track Irregularity Influence on the Wheel High-Frequency Vibration in Wheel-Rail System

A three-dimensional deformable finite element model of wheel-rail system is established. The vertical vibration natural frequencies are calculated by modal analysis. The improved central difference method by ABAQUS explicit nonlinear dynamics module is chosen to calculate the vertical vibration of w...

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Main Authors: Yang Lei, Xinyu Tian, Falin Qi, Dongsheng Chen, Tian Tian
Format: Article
Language:English
Published: Hindawi Limited 2016-01-01
Series:Mathematical Problems in Engineering
Online Access:http://dx.doi.org/10.1155/2016/5082319
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spelling doaj-54c2cf960d4e4b309afb8ddc900e97522020-11-24T23:22:18ZengHindawi LimitedMathematical Problems in Engineering1024-123X1563-51472016-01-01201610.1155/2016/50823195082319Vertical Track Irregularity Influence on the Wheel High-Frequency Vibration in Wheel-Rail SystemYang Lei0Xinyu Tian1Falin Qi2Dongsheng Chen3Tian Tian4China Academy of Railway Sciences, Beijing 100081, ChinaChina Academy of Railway Sciences, Beijing 100081, ChinaChina Academy of Railway Sciences, Beijing 100081, ChinaChina Academy of Railway Sciences, Beijing 100081, ChinaChina Academy of Railway Sciences, Beijing 100081, ChinaA three-dimensional deformable finite element model of wheel-rail system is established. The vertical vibration natural frequencies are calculated by modal analysis. The improved central difference method by ABAQUS explicit nonlinear dynamics module is chosen to calculate the vertical vibration of wheel axle. Through the vibration measurement experiment of LMA wheel by China Academy of Railway Sciences, the contact parameter is optimized and the model is modified. According to the nonlinear simulation results, the important influence of vertical track irregularity on the wheel set high-frequency vibration is discovered. The advantage frequencies through spectrum are close to the vertical vibration natural frequencies of seventh, eighth, ninth, and tenth mode. When the velocity is 350 km/h, system’s nonlinear dynamic characteristic is higher than the results at 200 km/h. The critical wavelength of vertical track irregularity on the wheel vertical vibration is about 0.8 m. In addition, a particular attention should be paid to one situation that the main dominant frequency amplitude is more than 50% of the acceleration amplitude even if the peak acceleration is low.http://dx.doi.org/10.1155/2016/5082319
collection DOAJ
language English
format Article
sources DOAJ
author Yang Lei
Xinyu Tian
Falin Qi
Dongsheng Chen
Tian Tian
spellingShingle Yang Lei
Xinyu Tian
Falin Qi
Dongsheng Chen
Tian Tian
Vertical Track Irregularity Influence on the Wheel High-Frequency Vibration in Wheel-Rail System
Mathematical Problems in Engineering
author_facet Yang Lei
Xinyu Tian
Falin Qi
Dongsheng Chen
Tian Tian
author_sort Yang Lei
title Vertical Track Irregularity Influence on the Wheel High-Frequency Vibration in Wheel-Rail System
title_short Vertical Track Irregularity Influence on the Wheel High-Frequency Vibration in Wheel-Rail System
title_full Vertical Track Irregularity Influence on the Wheel High-Frequency Vibration in Wheel-Rail System
title_fullStr Vertical Track Irregularity Influence on the Wheel High-Frequency Vibration in Wheel-Rail System
title_full_unstemmed Vertical Track Irregularity Influence on the Wheel High-Frequency Vibration in Wheel-Rail System
title_sort vertical track irregularity influence on the wheel high-frequency vibration in wheel-rail system
publisher Hindawi Limited
series Mathematical Problems in Engineering
issn 1024-123X
1563-5147
publishDate 2016-01-01
description A three-dimensional deformable finite element model of wheel-rail system is established. The vertical vibration natural frequencies are calculated by modal analysis. The improved central difference method by ABAQUS explicit nonlinear dynamics module is chosen to calculate the vertical vibration of wheel axle. Through the vibration measurement experiment of LMA wheel by China Academy of Railway Sciences, the contact parameter is optimized and the model is modified. According to the nonlinear simulation results, the important influence of vertical track irregularity on the wheel set high-frequency vibration is discovered. The advantage frequencies through spectrum are close to the vertical vibration natural frequencies of seventh, eighth, ninth, and tenth mode. When the velocity is 350 km/h, system’s nonlinear dynamic characteristic is higher than the results at 200 km/h. The critical wavelength of vertical track irregularity on the wheel vertical vibration is about 0.8 m. In addition, a particular attention should be paid to one situation that the main dominant frequency amplitude is more than 50% of the acceleration amplitude even if the peak acceleration is low.
url http://dx.doi.org/10.1155/2016/5082319
work_keys_str_mv AT yanglei verticaltrackirregularityinfluenceonthewheelhighfrequencyvibrationinwheelrailsystem
AT xinyutian verticaltrackirregularityinfluenceonthewheelhighfrequencyvibrationinwheelrailsystem
AT falinqi verticaltrackirregularityinfluenceonthewheelhighfrequencyvibrationinwheelrailsystem
AT dongshengchen verticaltrackirregularityinfluenceonthewheelhighfrequencyvibrationinwheelrailsystem
AT tiantian verticaltrackirregularityinfluenceonthewheelhighfrequencyvibrationinwheelrailsystem
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