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Broken rail track detection using smart materials

机译:使用智能材料破碎的轨道轨道检测

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摘要

Rail lines are subject to many types of damage that, in the worst cases, can cause train derailments. The damage can arise from either manufacturing defects or external factors, possibly even terrorist acts to disrupt the civil infrastructure. Current rail inspection techniques require train traffic to be interrupted while workers and equipment move along the track. Moreover, a technician with rail testing experience is required to analyze the results. This paper focuses on simple proof of concept experiments to determine if impedance based structural health monitoring may be used to detect anomalies in rail tracks, and in particular broken rails. The technique applies a very low voltage (one volt) high frequency wave to a structure, measures its response and determines the location and extent of a rail break. The monitoring device is envisioned to run off of ambient vibration and thermal gradients provided by passing trains and daily thermal cycles, store the energy and utilize the stored energy periodically to inspect the track (according to the track usage schedule). If damage occurs or starts to occur, a warning signal would be transmitted to substation then broadcast to the appropriate operator listing the location and extent of the damage.
机译:铁路线受到许多类型的损坏,即在最糟糕的情况下,可能会导致火车脱轨。从制造缺陷或外部因素都可能出现损坏,甚至可能是恐怖主义的行为来破坏民事基础设施。目前的轨道检测技术需要训练流量被中断,而工人和设备沿着轨道移动。此外,需要具有轨道测试经验的技术人员来分析结果。本文重点介绍了概念实验的简单证明,以确定是否基于阻抗的结构健康监测来检测轨道轨道中的异常,特别是破碎的轨道。该技术将非常低的电压(一伏)高频波应用于结构,测量其响应并确定导轨断裂的位置和范围。设想监控装置以耗尽通过通过列车和每日热循环提供的环境振动和热梯度,存储能量并定期利用存储的能量以检查轨道(根据轨道使用时间表)。如果发生或开始损坏,则将传输到变电站的警告信号,然后将其广播到适当的操作员列出损坏的位置和范围。

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