考虑三维轮廓的多边形车轮磨损机理

IF 1.7 4区 工程技术 Q3 ENGINEERING, CIVIL
Yaodong Fu, Muzi Wang, Dabin Cui, Ping Lu, Xinyi Li, Tao Liu
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引用次数: 0

摘要

车轮多边形磨损是当今铁路行业最严重的问题之一。为了研究车轮多边形磨损的机理,建立了磨损预测模型。采用三维车轮轮廓模型和改进的 USFD 磨损预测算法来研究车轮的磨损状态。研究了不同运行速度下车辆系统动态特性和车轮磨损状态。结果表明,考虑三维车轮多边形磨损时,车轮的振动状态会受到车轮垂直和横向耦合振动的影响。由于耦合振动的影响,车轮在不同相位角会出现较大的轮轨力波动点。这些不同相位角的较大轮轨力波动是车轮多边形磨损形成的原因之一。同时,车辆系统的自然模式也会影响车轮多边形的阶次和车轮多边形的振幅。本研究为车轮多边形机理的研究提供了新思路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The mechanism of polygonal wheel wear considering a three-dimensional profile
Wheel polygonal wear is one of the most serious problems in the railway industry nowadays. To study the mechanism of wheel polygonal wear, the wear prediction model was established. The three-dimensional wheel profile model and the improved USFD wear prediction algorithm were used to research the wear state of the wheel. The vehicle system dynamic characteristics and wheel wear state under different running speeds are studied. The results show that the vibration state of the wheel will be affected by the vertical and lateral coupling vibration of the wheel when considering the three-dimensional wheel polygonal wear. Due to the influence of coupled vibration, the wheel will appear larger wheel-rail force fluctuation points at different phase angles. The large wheel-rail force fluctuation at these different phase angles is one of the reasons for the formation of wheel polygonal wear. At the same time, the natural mode of the vehicle system will also affect the order of the wheel polygon and the amplitude of the wheel polygon. This study provides a new idea for the research of the wheel polygon mechanism.
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来源期刊
CiteScore
4.80
自引率
10.00%
发文量
91
审稿时长
7 months
期刊介绍: The Journal of Rail and Rapid Transit is devoted to engineering in its widest interpretation applicable to rail and rapid transit. The Journal aims to promote sharing of technical knowledge, ideas and experience between engineers and researchers working in the railway field.
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