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基于地铁车轮型面动态变化下轮轨界面综合摩擦系数优化

朱爱华 李安琰 张帆 杨建伟 白堂博

现代制造工程Issue(12):69-76,8.
现代制造工程Issue(12):69-76,8.DOI:10.16731/j.cnki.1671-3133.2024.12.009

基于地铁车轮型面动态变化下轮轨界面综合摩擦系数优化

Optimization of comprehensive friction coefficients at wheel-rail interface considering the dynamic changes in subway wheel profiles

朱爱华 1李安琰 1张帆 1杨建伟 1白堂博1

作者信息

  • 1. 北京建筑大学城市轨道交通车辆服役性能保障北京市重点实验室,北京 100044
  • 折叠

摘要

Abstract

Aiming at the dynamic changes in wheel profiles,the optimal rail top/side Friction Coefficient Combinations(FCCs)for wheels with worn flange and worn tread profiles in different service stages were explored separately.Wheel profile wear data was tracked along two subway lines as the distance traveled increased.A dynamic model of subway vehicle was construc-ted to analyze the effects of rail top/side FCCs on wheel-rail wear properties,attack angle of wheelset,surface fatigue index and derailment coefficient,with the dynamic changes in wheel profiles taken into account.Then a multi-objective optimization model was developed based on the entropy-weighted TOPSIS method,which includes the four performance indicators mentioned above as the criteria.Finally,the optimal FCCs were obtained.The results suggest that as wheel profiles dynamically change,the wheel-rail contact points show sudden changes in position and tend to concentrate to varying degrees,resulting in poorer match between wheels and rails.The comprehensive performance of worn flange profiles is affected primarily by rail top friction coefficient during initial operation.As the distance traveled increases,the rail side friction coefficient predominates.The comprehensive performance of worn tread profiles is influenced mainly by rail top friction coefficient in all stages of wheel service.During the stages of initial operation,early wear,middle wear,and late wear,the optimal rail top/side FCCs for wheels with a worn flange profile are 0.30/0.10,0.25/0.10,0.20/0.10,and 0.20/0.10,respectively.For wheels with a worn tread profile,these are 0.20/0.15,0.20/0.30,0.20/0.35,and 0.30/0.15,respectively.

关键词

轨顶/轨侧摩擦系数匹配/轮缘磨耗型面/踏面磨耗型面/熵权TOPSIS法

Key words

rail top/side friction coefficient combination/worn flange profile/worn tread profile/entropy-weighted TOPSIS method

分类

交通工程

引用本文复制引用

朱爱华,李安琰,张帆,杨建伟,白堂博..基于地铁车轮型面动态变化下轮轨界面综合摩擦系数优化[J].现代制造工程,2024,(12):69-76,8.

基金项目

国家自然科学基金资助项目(52272385) (52272385)

北京市自然科学基金项目(L211007) (L211007)

现代制造工程

OA北大核心CSTPCD

1671-3133

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