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Use of Laser Ultrasonics for Rail Flaw Detection--An Insight into Preliminary Experiments

机译:激光超声在铁轨缺陷检测中的应用-初步实验的见解

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There is an ever increasing demand for higher tonnages to be transported in heavy haul trains. This means that ensuring safety and reliability of rail tracks becomes an even more critical priority. Early detection of rail flaws ensures transportation safety and averts unplanned downtime. Several conventional non-destructive techniques have been proposed for rail flaw detection including eddy-current, infrared, vibration, and laser induced ultrasonic guided wave based detection techniques. Laser induced ultrasonic guided wave based detection stands out as a more suitable method for being adopted in a moving vehicle rail flaw detection system. This paper presents the design process of preliminary tests carried out on rail samples to understand the laser induced ultrasonic guided wave propagation. Firstly, standard ultrasound nondestructive testing equipment is used to verify the ultrasonic guided wave propagation in a rail section. Secondly, ultrasonic guided wave generation using a pulsed laser source is used to generate ultrasonic guided waves in a rail section. This is followed by sensing of the guided waves using air coupled ultrasonic sensors. Rail samples with known interior flaws are used to verify the reflection properties of ultrasound waves as the next step. The paper presents these preliminary experimental results.
机译:对于以重型运输火车运输更高吨位的需求不断增长。这意味着确保铁轨的安全性和可靠性变得更加重要。尽早发现铁轨瑕疵可确保运输安全并避免计划外的停机时间。已经提出了几种用于轨道缺陷检测的常规非破坏性技术,包括涡流,红外,振动和基于激光诱导的超声波导波的检测技术。基于激光诱导的超声波导引的检测是一种更适合在移动的车辆轨道探伤系统中采用的方法。本文介绍了对轨道样品进行的初步测试的设计过程,以了解激光诱导的超声波导波的传播。首先,使用标准的超声无损检测设备来验证超声导波在轨道部分中的传播。其次,使用脉冲激光源产生超声波导波用于在轨道部分产生超声波导波。随后,使用空气耦合超声传感器感测导波。下一步,将使用具有已知内部缺陷的轨道样本来验证超声波的反射特性。本文介绍了这些初步的实验结果。

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