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Detection of Damaged Supports Under Railway Track Using Dynamic Response of a Passing Vehicle

机译:使用传递车辆的动态响应检测铁路轨道下的损坏支撑

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摘要

Track is a key component in railway transportation systems. They are usually fixed by fasteners and supported by discrete sleepers, which sit on the ballast. A lot of research has been conducted to check the integrity of the rail track itself, like railway level and alignment; however, limited work has been carried out on the damages of railway supports including loosing and missing fasteners and damaged ballast. In this paper, the support-track-vehicle interaction system is analyzed in which the supports and track are modeled as evenly distributed springs and Euler beam, respectively, and the vehicle is simplified as a spring-mass system. It is found the natural frequencies of the interaction system change periodically with respect to the location of the vehicle, whereas the periodicity is broken when the support is damaged. Then, a detection method is proposed to identify the damaged supports by using the vertical acceleration of the traversing inspection vehicle, which acts as both the "exciter" and "message carrier" of the test. It shows good performance on the detection of damaged supports in both numerical and experimental validations. Moreover, it is more practical than other detection methods in real engineering applications because only one single accelerometer is required.
机译:轨道是铁路运输系统的关键组成部分。它们通常由紧固件固定并由离散睡眠者支撑,坐在镇流器上。已经进行了许多研究以检查铁路轨道本身的完整性,如铁路水平和对准;然而,在铁路支撑损失的损失包括丢失和缺失的紧固件和损坏的镇流器的损害中,已经进行了有限的工作。在本文中,分析了支撑轨道车辆相互作用系统,其中支撑和轨道分别被建模为均匀分布的弹簧和欧拉光束,并且车辆被简化为弹簧质量系统。它发现相互作用系统的自然频率相对于车辆的位置周期性地改变,而当支撑件损坏时,周期性被打破。然后,提出一种检测方法来识别通过使用遍历检查车辆的垂直加速度来识别损坏的支撑件,其用作测试的“激励器”和“消息载体”。它对在数值和实验验证中检测损坏支持的检测方面表现出良好的性能。此外,它比实际工程应用中的其他检测方法更实际,因为只需要一个单一加速度计。

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