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Freight trains dynamics: effect of payload and braking power distribution on coupling forces

机译:货运列车动力学:有效载荷和制动力分配对耦合力的影响

摘要

Coupling forces, especially buffer forces, play a significant role in affecting running safety of freight trains. The increase in coupling force is due to relative motion between adjacent wagons that depends both on track geometry and on manoeuvre performed. Emergency braking in particular, can strongly excite the longitudinal dynamics of a trainset, usually causing significant solicitations on coupling elements. Additionally, braking while cornering may enhance the effect of the coupling forces on the lateral dynamics of the wagon, decreasing running safety margins. A factor that affects the maximum solicitations on coupling devices during emergency braking is payload distribution compared to brake power distribution along the trainset. This issue is particularly significant in Italian railways where empty wagons may be placed along the trainset between fully laden ones without any particular restriction. This paper presents the results of a research aiming at defining imbalance indexes which can be related to the maximum forces exchanged among wagons through the coupling devices. Indexes can be used as guidelines for identifying critical payload distributions and improve wagons arrangement.
机译:耦合力,特别是缓冲力,在影响货运列车运行安全方面起着重要作用。耦合力的增加归因于相邻货车之间的相对运动,该相对运动既取决于轨道的几何形状,又取决于所执行的操纵。特别是紧急制动会强烈刺激火车的纵向动力,通常会引起联接元件的强烈拉动。另外,在转弯时制动可能会增强耦合力对货车横向动力的影响,从而降低行驶安全裕度。与沿列车的制动功率分配相比,在紧急制动期间影响耦合装置最大请求的因素是有效载荷分配。这个问题在意大利铁路中尤为重要,在该铁路中,空车厢可以沿着满载列车之间的火车组放置,而没有任何特殊限制。本文介绍了旨在定义不平衡指标的研究结果,该不平衡指标可能与通过耦合装置在货车之间交换的最大力有关。索引可以用作识别关键有效载荷分布并改善货车布置的指南。

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