Full Text:   <3875>

Summary:  <1768>

CLC number: O324

On-line Access: 2017-08-04

Received: 2016-11-22

Revision Accepted: 2017-05-15

Crosschecked: 2017-07-07

Cited: 0

Clicked: 5875

Citations:  Bibtex RefMan EndNote GB/T7714

 ORCID:

Xue-song JIN

http://orcid.org/0000-0003-3033-758X

-   Go to

Article info.
Open peer comments

Journal of Zhejiang University SCIENCE A 2017 Vol.18 No.8 P.579-592

http://doi.org/10.1631/jzus.A1600741


Experimental analysis of the mechanism of high-order polygonal wear of wheels of a high-speed train


Author(s):  Yue Wu, Xing Du, He-ji Zhang, Ze-feng Wen, Xue-song Jin

Affiliation(s):  State Key Laboratory of Traction Power, Southwest Jiaotong University, Chengdu 610031, China

Corresponding email(s):   xsjin@home.swjtu.edu.cn

Key Words:  High-speed train, Wheel, High-order polygonal wear, Field test, Model analysis, System resonance frequency


Share this article to: More |Next Article >>>

Yue Wu, Xing Du, He-ji Zhang, Ze-feng Wen, Xue-song Jin. Experimental analysis of the mechanism of high-order polygonal wear of wheels of a high-speed train[J]. Journal of Zhejiang University Science A, 2017, 18(8): 579-592.

@article{title="Experimental analysis of the mechanism of high-order polygonal wear of wheels of a high-speed train",
author="Yue Wu, Xing Du, He-ji Zhang, Ze-feng Wen, Xue-song Jin",
journal="Journal of Zhejiang University Science A",
volume="18",
number="8",
pages="579-592",
year="2017",
publisher="Zhejiang University Press & Springer",
doi="10.1631/jzus.A1600741"
}

%0 Journal Article
%T Experimental analysis of the mechanism of high-order polygonal wear of wheels of a high-speed train
%A Yue Wu
%A Xing Du
%A He-ji Zhang
%A Ze-feng Wen
%A Xue-song Jin
%J Journal of Zhejiang University SCIENCE A
%V 18
%N 8
%P 579-592
%@ 1673-565X
%D 2017
%I Zhejiang University Press & Springer
%DOI 10.1631/jzus.A1600741

TY - JOUR
T1 - Experimental analysis of the mechanism of high-order polygonal wear of wheels of a high-speed train
A1 - Yue Wu
A1 - Xing Du
A1 - He-ji Zhang
A1 - Ze-feng Wen
A1 - Xue-song Jin
J0 - Journal of Zhejiang University Science A
VL - 18
IS - 8
SP - 579
EP - 592
%@ 1673-565X
Y1 - 2017
PB - Zhejiang University Press & Springer
ER -
DOI - 10.1631/jzus.A1600741


Abstract: 
This paper presents a detailed investigation, via field experiment, into the mechanism of high-order polygonal wear of wheels of a new type of high-speed train. The investigation was carried out during the performance acceptance test of the train and its initial commercial operation. The investigation covered the performance acceptance test of 150 000 km and the commercial operation of about 150 000 km. In the performance acceptance test of the first stage of about 70 000 km, at 200–250 km/h with full loading and sometimes overloading by 30%, the serious polygonal wear of 23-order took place on all the wheels of the train, and was measured and analyzed in detail. All the polygonized wheels were re-profiled because the polygonal wear had caused strong vibration and damage to the train parts. After re-profiling, the vibration of the train and track and the wear status of the wheels were measured and analyzed at different test mileages according to the polygonal wear situation of the wheels. The measured vibration of the train includes the accelerations at different positions of a motor car and a trail car. The vibration modes of the key parts of the bogies of the two cars were calculated. Meanwhile, the track resonant frequencies were investigated at the site. The purpose of the above tests and analysis is try to find the frequency of work mode matching the passing frequency of the high-order wheel polygon. The present investigation shows that one of the working models causes the formation and development of the high-order wheel polygonal wear. The growth of this wear was effectively reduced through the frequent changing of the running speed of the train operating on the way back and forth every day.

The manuscript deals with the issue of the mechanism of high-order polygonal wear of wheels in the case of the high-speed train. This problem is very interesting for railway community.

高速列车高阶车轮多边形磨耗机理的试验研究

目的:通过试验研究,对高速列车车轮多边形磨耗机理进行初步探究。
创新点:以试验方法为基础,跟踪调查车轮多边形磨耗的发展规律,然后分别对轨道系统和车辆系统开展现场试验,对导致车轮发生多边形磨耗的因素进行排查,探明了车轮多边形磨耗的机理。
方法:1. 进行车轮多边形磨耗跟踪测试;2. 进行轨道结构模态特性测试、钢轨波磨测试和轨道振动响应测试;3. 进行转向架模态特性仿真研究、悬挂系统隔振特性测试以及车辆振动特性跟踪测试。
结论:1. 列车运行时,车轮受到周期性激励作用会发生多边形磨耗,且当激励波长整分车轮周长时,多边形磨耗发展迅速;2. 作为主要激励源,轮轨接触表面出现的车轮偏心、钢轨表面不平顺、轨下支承不均匀、钢轨接头和道岔等激发了转向架系统在550~600 Hz频段内的模态耦合共振,从而导致了车轮多边形磨耗的产生;3. 变速运行可以有效地控制车轮多边形磨耗的产生与发展。

关键词:高速列车;车轮多边形磨耗;机理;试验研究;模态分析;系统共振频率

Darkslateblue:Affiliate; Royal Blue:Author; Turquoise:Article

Reference

[1]Barke, D.W., Chiu, W.K., 2005. A review of the effects of out-of-round wheels on track and vehicle components. Proceedings of the Institution of Mechanical Engineers, Part F: Journal of Rail and Rapid Transit, 219(3):151-175.

[2]Brommundt, E., 1997. A simple mechanism for the polygonalization of railway wheels by wear. Mechanics Research Communications, 24(4):435-442.

[3]Feller, H.G., Walf, K., 1991. Surface analysis of corrugated wheel treads. Wear, 144(1-2):153-161.

[4]Jin, X.S., 2014. Some key problems faced in high-speed train operation. Journal of Zhejiang University-SCIENCE A (Applied Physics & Engineering), 15(12):936-945.

[5]Jin, X.S., Wu, L., Fang, J.Y., et al., 2012. An investigation into the mechanism of the polygonal wear of metro train wheels and its effect on the dynamic behaviour of a wheel/rail system. Vehicle System Dynamics, 50(12):1817-1834.

[6]Johansson, A., Nielsen, J.C.O., 2003. Out-of-round railway wheels—wheel-rail contact forces and track response derived from field tests and numerical simulations. Proceedings of the Institution of Mechanical Engineers, Part F: Journal of Rail and Rapid Transit, 217(2):135-146.

[7]Johansson, A., Andersson, C., 2005. Out-of-round railway wheels—a study of wheel polygonalization through simulation of three-dimensional wheel-rail interaction and wear. Vehicle System Dynamics, 43(8):539-559.

[8]Kalousek, J., Johnson, K.L., 1992. An investigation of short pitch wheel and rail corrugations on the Vancouver mass transit system. Proceedings of the Institution of Mechanical Engineers, Part F: Journal of Rail and Rapid Transit, 206(2):127-135.

[9]Kaper, H.P., 1988. Wheel corrugation on Netherlands railway (NS): origin and effects of ‘polygonization’ in particular. Journal of Sound and Vibration, 120(2):267-274.

[10]Mazilu, T., Dumitriu, M., Tudorache, C., et al., 2011. Wheel/rail interaction due to the polygonal wheel. UPB Scientific Bulletin Series D: Mechanical Engineering, 73(3):95-108.

[11]Meinke, P., Meinke, S., 1999. Polygonalization of wheel treads caused by static and dynamic imbalances. Journal of Sound and Vibration, 227(5):979-986.

[12]Meywerk, M., 1999. Polygonalization of railway wheels. Archive of Applied Mechanics, 69(2):105-120.

[13]Morys, B., 1999. Enlargement of out-of-round wheel profiles on high speed trains. Journal of Sound and Vibration, 227(5):965-978.

[14]Morys, B., Kuntze, H.B., 1997. Simulation analysis and active compensation of the out-of-round phenomena at wheels of high speed trains. Proceedings of World Congress on Railway Research, p.95-105.

[15]Morys, B., Kuntze, H.B., Hirsch, U., 1995. Investigation of origin and enlargement of out-of-round phenomena in high speed ICE-wheelsets. Proceedings of the 10th European ADAMS Users’ Conference.

[16]Nielsen, J.C.O., Johansson, A., 2000. Out-of-round railway wheels—a literature survey. Proceedings of the Institution of Mechanical Engineers, Part F: Journal of Rail and Rapid Transit, 214(2):79-91.

[17]Snyder, T., Stone, D.H., Kristan, J., 2003. Wheel flat and out-of round formation and growth. Proceedings of the IEEE/ASME Joint Rail Conference, p.143-148.

[18]Soua, B., Pascal, J.P., 1995. Computation of the 3D Wear of the Wheels in a High Speed Bogie. Report INRETS-LIN, Arcueil, France.

Open peer comments: Debate/Discuss/Question/Opinion

<1>

Please provide your name, email address and a comment





Journal of Zhejiang University-SCIENCE, 38 Zheda Road, Hangzhou 310027, China
Tel: +86-571-87952783; E-mail: cjzhang@zju.edu.cn
Copyright © 2000 - 2024 Journal of Zhejiang University-SCIENCE