客车轮毂型材在乌克兰和欧洲铁路上运营

T. Mokrii, I. Malysheva, L. Lapina, N. Bezrukavyi
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引用次数: 1

摘要

这项工作的意义源于乌克兰铁路运输现代化发展的迫切需要和乌克兰加快融入欧洲铁路运输的进程。目前,在轨距不同的国家之间穿越边境的最有效方式是使用轨距可变轮对,这种系统可以在通过特殊的轨距转换设施时从一种轨距转换到另一种轨距。在乌克兰和欧洲铁路上使用具有轨距可变轮对的汽车要求确保两种轨距轨道上的轮轨对具有良好的兼容性。这项工作的目标是为国内和欧洲铁路的运营制定统一的车轮轮廓,并预测使用该车轮轮廓的车辆的安全性,乘坐质量以及不同参数轨道的轮轨动态相互作用过程。运用了变形固体力学、统计动力学和数值积分等方法。构建了一系列车轮轮廓,并评估了它们在乌克兰(1520毫米轨距)和欧洲(1435毫米轨距)铁路乘用车轮对中使用的有效性。对于每个轮廓,车轮的空间问题?求解了导轨接触,分析了接触面贴片的尺寸和位置等相互作用参数。还计算了一辆汽车在小半径(R = 300米)的圆形曲线上以不同速度在切线路段上行驶的情况。根据车轮翼缘磨损和汽车动稳定性两个标准对所构建的轮廓进行了选择。在此基础上,提出了一种新型的耐磨轮型ITM-73EP。它在客车变距轮对上的应用将在不牺牲车辆动力性能的情况下,为乌克兰和欧洲铁路提供合理的轮轨相互作用指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Passenger car wheel profile for the operation on the Ukrainian and European railways
The relevance of this work stems from the urgent need for the modern development of the Ukrainian railway transport and the acceleration of Ukraine's integration into the European railway transportation. Currently, the most effective way to travel across borders between countries with different track gauges is the use of gauge-changeable wheelsets, a system that can change from one gauge to another when moving through special gauge changing facilities. The use of cars with gauge-changeable wheelsets on the Ukrainian and European railways calls for assuring a good compatibility of the wheel-rail pair on tracks of both gauges. The goal of this work was to develop a unified wheel profile for the operation on the domestic and European railways and predict the safety of cars with that wheel profile, the ride quality, and processes of wheel-rail dynamic interaction for tracks with different parameters. Use was made of methods of deformable solid mechanics, statistical dynamics, and numerical integration. A family of wheel profiles was constructed, and the effectiveness of their use in passenger car wheelsets on the Ukrainian (1520 mm gauge) and European (1435 mm gauge) railways was evaluated. For each profile, the spatial problem of wheel?rail contact was solved, and the interaction parameters were analyzed, including the dimensions and location of the contact patches. Calculations were also made for a car negotiating a circular curve of a small radius (R = 300 m) and moving at different speeds on tangent track sections. The choice among the constructed profiles was made according to two criteria: wheel flange wear and car dynamic stability. Based on the studies conducted, a new wear-resistant wheel profile, ITM-73EP, was proposed. Its use in gauge-changeable wheelsets of passenger cars will provide reasonable indices of wheel–rail interaction both on the Ukrainian and on the European railways without sacrificing car dynamic performance.
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