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Literature review | Open Access

A critical review of wheel/rail high frequency vibration-induced vibration fatigue of railway bogie in China

Xingwen Wu1( )Zhenxian Zhang2Wubin Cai1Ningrui Yang2Xuesong Jin2Ping Wang3Zefeng Wen2Maoru Chi2Shuling Liang2Yunhua Huang1
School of Mechanical Engineering, Southwest Jiaotong University, Chengdu, China
State Key Laboratory of Rail Transit Vehicle System, Southwest Jiaotong University, Chengdu, China
Key Laboratory of High-speed Railway Engineering Ministry of Education, Southwest Jiaotong University, Chengdu, China
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Abstract

Purpose

This review aims to give a critical view of the wheel/rail high frequency vibration-induced vibration fatigue in railway bogie.

Design/methodology/approach

Vibration fatigue of railway bogie arising from the wheel/rail high frequency vibration has become the main concern of railway operators. Previous reviews usually focused on the formation mechanism of wheel/rail high frequency vibration. This paper thus gives a critical review of the vibration fatigue of railway bogie owing to the short-pitch irregularities-induced high frequency vibration, including a brief introduction of short-pitch irregularities, associated high frequency vibration in railway bogie, typical vibration fatigue failure cases of railway bogie and methodologies used for the assessment of vibration fatigue and research gaps.

Findings

The results showed that the resulting excitation frequencies of short-pitch irregularity vary substantially due to different track types and formation mechanisms. The axle box-mounted components are much more vulnerable to vibration fatigue compared with other components. The wheel polygonal wear and rail corrugation-induced high frequency vibration is the main driving force of fatigue failure, and the fatigue crack usually initiates from the defect of the weld seam. Vibration spectrum for attachments of railway bogie defined in the standard underestimates the vibration level arising from the short-pitch irregularities. The current investigations on vibration fatigue mainly focus on the methods to improve the accuracy of fatigue damage assessment, and a systematical design method for vibration fatigue remains a huge gap to improve the survival probability when the rail vehicle is subjected to vibration fatigue.

Originality/value

The research can facilitate the development of a new methodology to improve the fatigue life of railway vehicles when subjected to wheel/rail high frequency vibration.

References

【1】
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Railway Sciences
Pages 177-215

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Cite this article:
Wu X, Zhang Z, Cai W, et al. A critical review of wheel/rail high frequency vibration-induced vibration fatigue of railway bogie in China. Railway Sciences, 2024, 3(2): 177-215. https://doi.org/10.1108/RS-12-2023-0048

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Received: 09 December 2023
Revised: 19 February 2024
Accepted: 22 February 2024
Published: 29 March 2024
© Xingwen Wu, Zhenxian Zhang, Wubin Cai, Ningrui Yang, Xuesong Jin, Ping Wang, Zefeng Wen, Maoru Chi, Shuling Liang and Yunhua Huang. Published in Railway Sciences.

This article is published under the Creative Commons Attribution (CC BY 4.0) licence. Anyone may reproduce, distribute, translate and create derivative works of this article (for both commercial and non-commercial purposes), subject to full attribution to the original publication and authors. The full terms of this licence may be seen at http://creativecommons.org/licences/by/4.0/legalcode