Refinement of the rail–wheel contact pair to improve rail–wheel interaction conditions for railway vehicles with an increased axle load

T. Mokrii, I. Malysheva, N. Bezrukavyi, I.M. Ladyhin
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Abstract

At present, one of the global trends in railway transport development, which becomes clearer and clearer, is increasing the axle load of freight cars, which gives a considerable economic benefit. In this connection, of importance is not only the car design, but also the car capacity utilization factor: the higher this factor, the more economically efficient the car use. Because of this, one of the priority global lines in increasing the volume of fright traffic and the railway operation efficiency is increasing the carrying capacity of freight cars. Preparing the railways for cars with increased axle loads calls for the development of measures to decrease the track deformability, in particular by choosing appropriate wheel and rail profiles. The aim of this work was to develop recommendations on refining the wheel?rail contact pair to improve curve negotiation by railway vehicles with an increased axle loads on the Ukrainian railways. This paper presents the proprietary R-ITM wear-resistant railhead profile. The effect of the new profile on wheel?rail interaction in negotiating a curve of radius 300 m at a constant speed was studied for different cars. In doing so, emphasis was on wheel?rail interaction for a new-generation freight car on 18-9817 trucks with an axle load increased to 36 tf. The studies conducted made it possible to formulate the following recommendations: to improve curve negotiation by railway vehicles with increased axle loads, reduce the adverse effect on the track and improve traffic safety, new proprietary contact pair profiles are recommended: the ITM-73-03 wheel profile for cars, and the R-ITM railhead profile for outer rails together with the standard R65 railhead profile for inner rails.
改进轨轮接触副以改善轴重增加的轨道车辆轨轮相互作用条件
目前,全球铁路运输发展的趋势之一是增加货车轴重,这一趋势越来越明显,并能带来可观的经济效益。在这方面,重要的不仅是汽车的设计,还有汽车的容量利用系数:这个系数越高,汽车的使用就越经济高效。正因为如此,提高货运车辆的运载能力是全球范围内提高货运运输量和铁路运营效率的重点之一。为增加轴载荷的汽车准备轨道要求制定降低轨道变形性的措施,特别是通过选择适当的轮轨轮廓。这项工作的目的是提出改进车轮的建议。轨道接触副,以改善曲线谈判的铁路车辆与增加轴载荷在乌克兰铁路。本文介绍了自主研发的R-ITM型钢轨耐磨型材。新外形对车轮的影响?研究了不同车辆在匀速通过半径300 m曲线时的轨道相互作用。在这样做的过程中,重点是在车轮上?18-9817卡车上新一代货车的轨道相互作用,轴荷增加到36tf。通过这些研究,可以提出以下建议:为了提高轴载增加的铁路车辆的弯道通过能力,减少对轨道的不利影响,提高交通安全性,建议采用新的专有接触副轮廓:ITM-73-03车轮轮廓,R-ITM外轨轨头轮廓以及标准R65内轨轨头轮廓。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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