Abstract:Research purposes: To investigate the dynamic behavior of steel spring floating slab track (SSFST) under different train speed, and analyze the train running safety when it is used in inner-city rapid rail transit at 160 km/h, eight steel spring floating slab tracks with a total length of 200 m were installed in a test railway line. In the test section, a train speed increased step by step from 60 km/h to 160 km/h. The track dynamic displacement and wheel/rail forces were tested on five sections, and the train running safety under different speeds was analyzed. Research conclusions: (1) When the train speed gradually increases to 160 km/h, all the safety indexes of steel spring floating slab track do not increase significantly with speed. (2) The vertical dynamic displacements on each steel spring floating slab track do not exceed 3.0 mm, and they decrease with the increase of train speed. (3) At different train speeds, the derailment coefficient is less than 0.3, the rate of wheel load reduction is less than 0.4, and the wheelset lateral force is less than 20 kN. There is safety redundancy for all the above aspects. (4) The present research can provide experimental support for the design and implementation of high-level vibration reduction measures for inner-city rapid rail transit.
丁德云, 马蒙, 王文斌, 闫宇智, 吴宗臻. 市域快轨钢弹簧浮置板轨道行车安全试验*[J]. 铁道工程学报, 2023, 40(3): 33-38.
DING Deyun, MA Meng, WANG Wenbin, YAN Yuzhi, WU Zongzhen. Experimental Study of Train Running Safety on Steel Spring Floating Slab Track Used in Inner-city Rapid Rail Transit. Journal of Railway Engineering Society, 2023, 40(3): 33-38.
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