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FIELD INVESTIGATIONS ON ROLLING STOCK COMPONENTS DESIGNED TO OVERCOME LOW ADHESION RELATED PROBLEMS

机译:旨在解决低附着力相关问题的轧制组件的现场调查

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The tangential force that a braking or tractive wheel can exert on a rail is limited by the friction coefficient available at the surfaces in contact for a given normal load. In clean steel-on-steel contacts the friction coefficient is known to be higher than the adhesion requirements of the majority of the existent rolling stock. However, in the presence of contamination (e.g. leaves, water, grease, and rust) the friction level can decrease to values far below those required in normal traction and braking operations. In particular, fallen leaves have been identified by many railways to cause considerable low adhesion problems in autumn. Despite the available countermeasures the adhesion problems still seem to persist in the majority of the affected networks. This could to a large extent be due to the lack of fundamental understanding on the effectiveness of the countermeasures used under different operating conditions. In this paper, the effectiveness of two rolling stock components, namely locomotive sanders and permanent magnetic track hakes, in leaf contaminated contacts is investigated by means of full-scale tests in a stabling yard. An electrical locomotive has been used to asses the performance of the sanders, whereas the tests with permanent magnetic track brakes have been carried out with an electrical multiple unit.
机译:对于给定的法向载荷,制动轮或牵引轮可以施加在轨道上的切向力受到接触表面可用的摩擦系数的限制。在清洁的钢对钢接触中,已知摩擦系数高于大多数现有机车车辆的附着力要求。但是,在存在污染物(例如树叶,水,油脂和铁锈)的情况下,摩擦力水平可能降低到远低于正常牵引和制动操作所需的水平。特别是,许多铁路公司已经发现落叶会在秋季引起相当低的附着力问题。尽管有可用的对策,但在大多数受影响的网络中似乎仍然存在粘附问题。这在很大程度上可能是由于缺乏对在不同操作条件下使用的对策的有效性的基本了解。在本文中,通过在稳定场中进行全面测试,研究了两种机车车辆部件(机车砂光机和永磁磁道电锤)在叶片污染的接触件中的有效性。电力机车已被用于评估砂光机的性能,而永磁轨道制动器的测试已通过电子多单元进行。

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