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01-12-2024 | Original Paper

The Effect of Friction Radius Variation on the Friction-Induced Vibration and Noise

Authors: Sujie Li, Zaiyu Xiang, Songlan Xie, Jiakun Zhang, Zhengming Xiao, Bin Tang, Deqiang He

Published in: Tribology Letters | Issue 4/2024

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Abstract

The article delves into the phenomenon of friction-induced vibration and noise (FIVN) in mechanical systems, emphasizing its prevalence in various friction pairs such as brake systems, train wheel-rail contact systems, and gear transmission systems. FIVN significantly impacts the operational accuracy and reliability of mechanical systems, leading to wear and crack initiation. The study employs experimental research, finite element analysis, and numerical analysis to understand the mechanisms of FIVN. Notably, the article focuses on the effect of friction radius variation on FIVN characteristics, using a high-speed train's primary braking device as a case study. The research involves conducting experiments on a CETR friction and wear tester, collecting FIV and friction noise signals, and analyzing them from both time and frequency domains. The results reveal that an increase in friction radius significantly enhances FIV and friction noise intensity, leading to more severe wear on the friction disc. Additionally, the study utilizes finite element simulations and a 2-DOF numerical model to further investigate the influence of friction radius on system stability and dynamic characteristics. The findings highlight the crucial role of friction radius in FIVN, providing valuable insights into mitigating this issue in mechanical systems.

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Metadata
Title
The Effect of Friction Radius Variation on the Friction-Induced Vibration and Noise
Authors
Sujie Li
Zaiyu Xiang
Songlan Xie
Jiakun Zhang
Zhengming Xiao
Bin Tang
Deqiang He
Publication date
01-12-2024
Publisher
Springer US
Published in
Tribology Letters / Issue 4/2024
Print ISSN: 1023-8883
Electronic ISSN: 1573-2711
DOI
https://doi.org/10.1007/s11249-024-01923-8

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