Wheel-rail impact load due to the loss of sleeper-ballast interface

Mahsa Farshidi, Yazdan Mohammadian, Jafar Hosseini Manoujan
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Abstract

This paper presents a comprehensive study on the simulation and analysis of the loss of sleeper-ballast interfaces in railway systems. Through a combination of Multibody Dynamics (MBD) and Finite Element Analysis (FEA) techniques, accurate modeling and validation processes were employed to investigate the impact of interface loss on wheel-rail impact load. Various scenarios were explored, revealing significant findings: for fewer than 4 sleeper-ballast interface losses, a notable 30% increase in wheel-rail impact load was observed, while the rate of increase in wheel-rail impact load diminished for more than 4 sleepers. Furthermore, gap size emerged as a critical factor, with sizes between 0.2 mm and 1.6 mm leading to a load increase exceeding 65%. The study also highlighted the substantial influence of train speed on load dynamics, particularly evident at speeds up to 200 km/h, where loads escalated significantly, resulting in a 180% increase under adverse conditions. These findings emphasize the importance of considering various factors in maintaining railway infrastructure integrity and safety.
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由于枕木-道碴界面损失造成的轮轨冲击负荷
本文对铁路系统中枕木-道碴界面损失的模拟和分析进行了全面研究。通过结合多体动力学(MBD)和有限元分析(FEA)技术,采用精确的建模和验证过程,研究了界面损失对轮轨冲击载荷的影响。对各种情况进行了探讨,得出了重要结论:当枕木-道碴界面损失少于 4 个时,轮轨冲击载荷会明显增加 30%,而当枕木超过 4 个时,轮轨冲击载荷的增加率会降低。此外,间隙大小也是一个关键因素,0.2 毫米到 1.6 毫米之间的间隙会导致载荷增加 65% 以上。研究还强调了列车速度对载荷动态的重大影响,尤其是在时速高达 200 公里时,载荷显著增加,在不利条件下增加了 180%。这些发现强调了在维护铁路基础设施完整性和安全性时考虑各种因素的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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