采用全尺寸滚轮台架试验研究400km /h内车轮扁平对轮轨的冲击

Chong-Seok Chang, Yuanwu Cai, Bo Chen, Qiuze Li, Pengfei Lin
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引用次数: 0

摘要

目的在使用过程中,轮面与钢轨的周期性碰撞会产生较大的轮轨冲击力和高频振动,对轮对、钢轨和轨道结构造成严重破坏。本研究旨在分析高速列车车轮扁平对轮轨的冲击特性及动态冲击规律。设计/方法/方法采用全尺寸高速轮轨界面试验台,对高速列车车轮扁面对轮轨的动态冲击进行了试验研究。在车轮踏面滚动圈周围手动设置不同长度、宽度和深度的车轮踏面,在平台上进行了0 ~ 400 km/h速度范围内的轮轨动态冲击试验。结果表明:随着车速的增加,平面引起的轮轨动冲击力的最大值迅速增大,在车速35 km/h左右达到极限。然后随着速度的继续增长,它逐渐下降。扁轮对钢轨的冲击导致100-500 Hz的中频振动,以及2000 Hz和6000 Hz左右的高频振动。在运行过程中,如果发现车轮扁平,应根据扁平的情况控制列车速度,尽量避免运行速度在20公里/小时- 80公里/小时。独创性/价值本研究为利用全尺寸高速轮轨界面试验台获得车轮平面化引起的轮轨动态冲击提供了一种新方法。研究了扁面尺寸、运行速度和动态冲击之间的关系,为不同程度高铁车轮扁面限速的制定提供了参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental study of the wheel/rail impact caused by wheel flat within 400 km/h using full-scale roller rig
PurposeIn service, the periodic clashes of wheel flat against the rail result in large wheel/rail impact force and high-frequency vibration, leading to severe damage on the wheelset, rail and track structure. This study aims to analyze characteristics and dynamic impact law of wheel and rail caused by wheel flat of high-speed trains.Design/methodology/approachA full-scale high-speed wheel/rail interface test rig was used for the test of the dynamic impact of wheel/rail caused by wheel flat of high-speed train. With wheel flats of different lengths, widths and depths manually set around the rolling circle of the wheel tread, and wheel/rail dynamic impact tests to the flats in the speed range of 0–400 km/h on the rig were conducted.FindingsAs the speed goes up, the flat induced the maximum of the wheel/rail dynamic impact force increases rapidly before it reaches its limit at the speed of around 35 km/h. It then goes down gradually as the speed continues to grow. The impact of flat wheel on rail leads to 100–500 Hz middle-frequency vibration, and around 2,000 Hz and 6,000 Hz high-frequency vibration. In case of any wheel flat found during operation, the train speed shall be controlled according to the status of the flat and avoid the running speed of 20 km/h–80 km/h as much as possible.Originality/valueThe research can provide a new method to obtain the dynamic impact of wheel/rail caused by wheel flat by a full-scale high-speed wheel/rail interface test rig. The relations among the flat size, the running speed and the dynamic impact are hopefully of reference to the building of speed limits for HSR wheel flat of different degrees.
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