弯曲和切线铁路的热屈曲:参数研究

ce/papers Pub Date : 2024-03-27 DOI:10.1002/cepa.3049
Paulo A. G. Piloto, Manuel J. C. Minhoto, Diego R. Rossetto, Eduardo Nava
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引用次数: 0

摘要

本研究调查了铁路基础设施中的热屈曲,这种屈曲可能导致脱轨和安全风险。研究分析了各种参数对热屈曲的影响,重点是错位和道碴阻力。使用有限元模型模拟了弯曲和切线轨道,并考虑了轨道截面、枕木材料、紧固件刚度和初始缺陷。结果表明,道碴阻力是最关键的因素,压实的道碴会使屈曲温度最高增加 127%。此外,轨道缺陷也会显著影响温度的升高。针对不同条件下的运行状况,提出了新的设计指南。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
THERMAL BUCKLING ON CURVED AND TANGENT RAILWAYS: PARAMETRIC STUDY

This study investigates the thermal buckling in railway infrastructures, which can cause derailments and safety risks. The research analyses the influence of various parameters on thermal buckling, focusing on misalignment and ballast resistance. Using a finite element model, curved and tangent tracks are simulated, considering rail sections, sleeper materials, fastener stiffness and initial imperfections. Results demonstrate that ballast resistance is the most critical factor, with compacted ballast increasing buckling temperatures by up to 127%. Additionally, rail imperfections significantly impact temperature increases. A new design guide is proposed for operating conditions under different conditions.

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