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A REVIEW OF PARAMETERS AFFECTING RAIL BREAK GAP SIZE USING ANALYTICAL METHODS

机译:利用分析方法对影响轨道断裂隙尺寸的参数综述

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Management of continuous welded rail (CWR) stress is critical to maintaining railroad safety. To successfully manage the stress-state of the rail, knowing the rail neutral temperature (RNT) is critical. RNT is defined as the temperature at which the net longitudinal force in the rail is zero. If the RNT is set too low/high then the rail would buckle/pull apart and create unsafe operation conditions. To reduce unsafe operating conditions, researchers have previously developed guidelines for managing RNT maintenance activities. However, there remains an opportunity to improve these guidelines given there have been 24 derailments caused by buckled track between 2009 and 2018. Therefore, a research program has been established to improve current guidelines. It is difficult to manage the stress of CWR because the RNT is difficult to quantify, and has been shown to change over time, tonnage, or as a result of maintenance (tamping, etc.). Further, rail breaks may lead to local changes in RNT, leading to the need for RNT readjustment. Current guidelines estimate prevalent RNT before a rail break/cut based on rail gap size. Therefore, as a part of a broader research program, this paper reviews an analytical method presented by Kerr that quantifies rail break gap length and identifies the roles of longitudinal track resistance and stiffness. Results indicate that plastic track displacements driven by longitudinal track resistance dominate, and the longitudinal track stiffness has limited influence. This paper also identifies limitations of this analytical approach and documents recommendations for improved models.
机译:连续焊接导轨(CWR)应力管理对于维持铁路安全至关重要。为了成功管理导轨的应力状态,知道轨道中性温度(RNT)至关重要。 RNT被定义为导轨中净纵向力为零的温度。如果RNT设置得太低/高电平,则轨道将扣/拉开并创建不安全的操作条件。为了减少不安全的操作条件,研究人员以前开发了管理RNT维护活动的指导。但是,仍有机会在2009年至2018年间扣除的赛道造成的24次轨道上有机会改进这些指导方针。因此,已经建立了一项研究计划,以改善目前的指导方针。由于RNT难以量化,因此难以管理CWR的应力,并且已被显示为随时间,吨位或由于维护(夯实等)而变化。此外,轨道断裂可能导致RNT的局部变化,导致对RNT重新调整的需要。目前指南在基于轨道间隙尺寸的轨道断裂/切割之前估计普遍的RNT。因此,作为更广泛的研究计划的一部分,本文评论了克尔克尔呈现的分析方法,该方法量化了轨道断裂隙长度,并识别纵向轨道电阻和刚度的作用。结果表明,纵向轨道电阻支配驱动的塑料轨道位移,纵向轨道刚度具有有限的影响。本文还确定了这种分析方法和文献建议对改进模型的限制。

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