高效应急三轨鱼尾板接头夹具的设计、开发与实现

Shawn Jun Jie Pang, Andrew Keong Ng
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引用次数: 0

摘要

在铁路网络中,第三轨接头是确保电气连续性和第三轨对齐的不可或缺的资产。当在列车收入服务期间报告出现故障的第三轨连接问题时,轨道维护人员将实施临时解决方案来解决该问题。然而,在紧急恢复过程中往往要花费大量的时间和精力。因此,本文旨在设计、开发和实现一种紧急三轨鱼尾板接头夹具(ETJC),该夹具能够有效地克服三轨接头故障问题,同时最大限度地降低运营成本。使用Creo Parametric和Ansys软件包对ETJC进行设计、建模和仿真。对ETJC进行了静力结构分析。制造ETJC的材料经过精心挑选,可以承受地面上可能发生的任何负载和环境条件。ETJC在火车站轨道上实施,并通过锤击试验进行了评估。利用ETJC对三轨接头不同位置的加速度信号进行了采集和分析。仿真结果与现场试验结果一致,表明ETJC能够牢固地支撑和对准缺陷的三轨接头。
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Design, Development and Implementation of an Effective and Efficient Emergency Third Rail Fishplate Joint Clamp
A third rail joint is an indispensable asset ensuring electrical continuity and third rail alignment in a railway network. When a faulty third rail joint issue is reported during train revenue service, track maintenance staff will implement an interim solution to address it. However, considerable time and effort are often spent on the emergency recovery process. This paper, therefore, aims to design, develop, and implement an Emergency Third Rail Fishplate Joint Clamp (ETJC) that can effectively and efficiently overcome faulty third rail joint issues, while minimizing operational costs. ETJC design, modeling, and simulation were performed using Creo Parametric and Ansys software packages. A static structural analysis of ETJC was conducted. Materials for manufacturing ETJC were carefully selected to withstand any loading and environmental conditions that may occur on the ground. The ETJC was implemented in a train depot track and evaluated via hammer impact tests. Acceleration signals were acquired and analyzed at different locations on the third rail joint with ETJC. Results from simulation and field experiments are consistent and promising, thereby implying that the ETJC can firmly support and align a defective third rail joint.
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