Field investigation on the effect of the tamping machine and dynamic track stabilizer on changing the rail support modulus

Aliakbar Abbasi, J. Zakeri, Ehsan Norouzi, S. Mosayebi
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Abstract

Due to increasing train speed and passage tonnage, the repair and maintenance of ballasted railway tracks is essential. As a result of cyclic train loads on ballasted tracks, the ballast layer can deteriorate. When the ballast bed deteriorates, it can change the track geometry, which leads to uncomfortable ride and an increase in wheel-rail interaction. Tamping is one of the most widely used methods for filling the ballast layer gaps around sleepers and homogenizing ballast beds in order to align the track geometry. After passing the tamping machine, the dynamic stabilizing machine is utilized to improve the quality of the ballast bed. The rail support modulus is an essential parameter for analyzing ballasted railway tracks, and it can change after maintenance operations. This paper extensively discusses the effects of maintenance operations on rail support modulus as an essential safety factor in ballasted tracks. In this study, a series of field tests are planned and conducted at Karaj station in Iran to investigate the effects of passing tamping and stabilizing machines on the rail support modulus in ballasted tracks. In this regard, the rail support modulus of the ballasted track according to deflection basins was measured in three stages (before tamping, after tamping, and after stabilizing), and the results were analyzed to determine the effects of passing maintenance machines on ballast beds. Based on the results, the tamping operation results in a 75.5% reduction in the rail support modulus, and after stabilizing the railway track, the rail support modulus is increased by 35.8%.
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夯实机和动态轨道稳定器对改变轨道支撑模量的影响的实地调查
由于列车速度和通过吨位的不断增加,有砟轨道的维修和维护工作至关重要。由于火车在有砟轨道上的周期性负载,有砟轨道的有砟层会发生老化。当无砟道床老化时,会改变轨道的几何形状,导致乘坐不舒适和轮轨相互作用加剧。夯实是最广泛使用的方法之一,用于填充枕木周围的道碴层间隙,并使道碴层均匀化,以调整轨道几何形状。通过捣固机后,再利用动态稳定机来提高道碴床的质量。钢轨支撑模量是分析有砟轨道的重要参数,在维护作业后会发生变化。本文广泛讨论了维护作业对作为无砟轨道重要安全系数的钢轨支撑模量的影响。在这项研究中,计划在伊朗卡拉杰站进行一系列现场测试,以研究通过捣固和稳定机器对无砟轨道中钢轨支撑模量的影响。为此,根据挠度盆分三个阶段(捣固前、捣固后和稳定后)测量了有砟轨道的钢轨支撑模量,并对结果进行了分析,以确定通过维护机器对无砟道床的影响。根据结果,捣固作业导致钢轨支撑模量降低了 75.5%,而在稳定铁轨后,钢轨支撑模量增加了 35.8%。
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