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THE USE OF STRAIN ATTENUATING TIE PADS AND ITS INFLUENCE ON THE RAIL SEAT LOAD IN HEAVY-HAUL RAILROADS

机译:使用应变衰减系垫及其对重载铁路铁路座椅载荷的影响

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In Greece, during the 1980's, 60% of the twin-block concrete ties designed for 200 km/h, which were laid on a track with maximum operational speed of 140 km/h, presented serious cracks. The existing theories, in the French, German and American bibliographies, could not justify the appearance of these cracks since the calculated actions on the rail seat of the ties were much lower than the limit values of the regulations. This paper presents a model for the determination of the load acting on the rail seat of the ties in relation to the fluctuation of the substructure stiffness coefficient. The basic parameters influencing the estimation of the rail seat load - considering the most adverse conditions of a railway network-are investigated, and a methodology for calculating the load undertaken by each rail seat is presented. Numerical applications on twin-block and monoblock ties are presented, including the use of strain attenuating tie pads with high resilient fastenings. Finally, an application for the heavy-haul rail transport is presented, for the case of a track equipped with W24 fastening, Zw700WIC pad, rail 140RE type and concrete sleepers.
机译:在希腊,在20世纪80年代,60%的双块混凝土系列设计为200公里/小时,展出了最大运行速度为140公里/小时的轨道,提出了严重的裂缝。现有的理论,在法国,德国和美国书目中,无法证明这些裂缝的外观,因为该领带的铁路座位上的计算动作远低于规定的限制值。本文介绍了用于确定在关系的关系上的轨道座上的负荷的模型,其与子结构刚度系数的波动相对于的波动。研究了影响轨道座椅估计的基本参数 - 考虑到铁路网络的最不利条件 - 得到了计算每个轨道座椅所采用的负载的方法。提出了双块和单块连接的数值应用,包括使用应变衰减带垫具有高弹性紧固件。最后,提出了一种重载轨道运输的应用,适用于配备W24紧固,ZW700WIC垫,轨道140RE类型和混凝土睡眠机的轨道的情况。

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