Wheel¬–rail interaction for a passenger car with the ITM-73ER new wheel profile in curves

T. Mokrii, I. Malysheva, L. Lapina, S.S. Pasichyk
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Abstract

Speeding up the integration of Ukraine into the European railway transportation is an important task in the current development of the Ukrainian railway transport. Currently, the most effective way to travel across borders between countries with different track gauges is the use of gauge-changeable wheelsets. Continuous traffic on the Ukrainian (1520 mm gauge) and European (1435 mm gauge) railways calls not only for gauge changing facilities, but also for the compatibility of the wheel-rail contact pair on both railways: R65 rails and a cant of 1/20 in Ukraine and UIC60 rails and a cant of 1/40 in Europe. At the Institute of Technical Mechanics of the National Academy of Sciences of Ukraine and the State Space Agency of Ukraine, a new wear-resistant wheel profile, ITM-73ER, was proposed. As predicted, its use in passenger cars will offer dynamic stability and a high dynamic performance throughout the range of operating speeds on the Ukrainian and European railways and acceptable indices of wheel – unworn rail interaction on both railways. In service, the shapes of the wheel and rail contact surfaces change due to wear, especially in curves. Because the Ukrainian and European railways mostly use wheel and rail profiles of their own, the use of the new wheel profile may impair the wheel–rail interaction process, enhance wheel flange wear, and shorten the wheel life. The goal of this work is to study the effect of the in-service rail head shape change in curves of the Ukrainian and European railways on the wheel–rail interaction indices of a passenger car with ITM-73ER profile wheels. The head shapes of outer rails of the Ukrainian and European railways’ circular curves were predicted for a side flange wear changing from 0 to 8 mm in 2 mm increments. The calculations were made for two circular curves of radius 300 m with UIC60 rails and a cant of 1/40 (Europe) and R65 rails and a cant of 1/20 (Ukraine). To speed up the prediction, it was assumed that the curves were traveled by four-axle fully loaded freight cars, which maximizes the rail wear. The freight car wheels were assumed to be unworn and machined to the S1002 profile (for the European railways) and to the standard profile specified by the Ukrainian State Standard GOST 10791:2016 (for the Ukrainian railways). Using the computed head shapes of R65 and UIC60 rails differing in wear degree, a study was conducted into their effect on the wheel–rail pair strain and stress field and the dynamic indices of car–track interaction for passenger cars with ITM73-ER profile wheels negotiating a circular curve of radius 300 m. It was shown that the use of the ITM-73ER wheel profile in passenger cars will offer improved indices of car–track interaction, for worn rails too, both on the Ukrainian railways and in the combined operation on the Ukrainian and European railways.
采用ITM-73ER新车轮曲线的乘用车轮轨相互作用
加快乌克兰融入欧洲铁路运输是当前乌克兰铁路运输发展的一项重要任务。目前,在轨距不同的国家之间进行跨境旅行的最有效方式是使用轨距可变的轮对。乌克兰(1520毫米轨距)和欧洲(1435毫米轨距)铁路上的持续交通不仅要求轨距更换设施,而且要求两条铁路上轮轨接触副的兼容性:乌克兰的R65轨道和1/20的倾斜,欧洲的UIC60轨道和1/40的倾斜。在乌克兰国家科学院技术力学研究所和乌克兰国家航天局,提出了一种新的耐磨车轮轮廓,ITM-73ER。正如预测的那样,它在乘用车中的使用将在乌克兰和欧洲铁路的整个运行速度范围内提供动态稳定性和高动态性能,并在两条铁路上提供可接受的车轮-未磨损轨道相互作用指数。在使用中,轮轨接触面的形状由于磨损而改变,特别是在曲线中。由于乌克兰和欧洲铁路大多使用自己的轮轨轮廓,使用新的轮轨轮廓可能会破坏轮轨相互作用过程,增加轮缘磨损,缩短车轮寿命。本文的目的是研究乌克兰和欧洲铁路在役轨头形状变化对采用ITM-73ER型轮的客车轮轨相互作用指标的影响。预测了乌克兰和欧洲铁路的圆形曲线的外轨的头部形状,以2毫米的增量从0到8毫米的边法兰磨损变化。对半径300 m的两条圆形曲线进行了计算,其中UIC60轨道和斜面为1/40(欧洲),R65轨道和斜面为1/20(乌克兰)。为了加快预测速度,假设曲线由四轴满载货车行驶,使轨道磨损最大化。假定货车车轮未磨损,并加工成S1002型(适用于欧洲铁路)和乌克兰国家标准GOST 10791:2016(适用于乌克兰铁路)规定的标准型。利用R65和UIC60轨道不同磨损程度的计算头形,研究了ITM73-ER型车轮在半径为300 m的圆曲线上行驶时,它们对轮轨副应变、应力场和车轨相互作用动力学指标的影响。结果表明,在客车上使用ITM-73ER轮型将改善车轨相互作用的指标,对于乌克兰铁路以及乌克兰和欧洲铁路的联合运营中磨损的轨道也是如此。
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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