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An initial investigation on the potential applicability of Acoustic Emission to rail track fault detection

机译:声发射在轨道故障检测中的潜在适用性的初步研究

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In light of recent accidents in the rail industry, the assessment of the mechanical integrity of rail-track is of vital importance. This encompasses the integrity of the track due to rolling contact fatigue and surface wear. Whilst numerous techniques are employed for crack detection, several defects have clearly been missed. In Europe, more than 100 rails are broken each year and rail maintenance costs within the European Union is estimated at 300-million Euros annually [Inst Mech Engrs 216 (2001) 249]. The derailment of a train at Hatfield in October 2000 is a tragic example of a fractured rail going undetected. This paper presents an experimental study on the applicability of Acoustic Emissions (AE) for rail-track defect diagnosis. An experimental test-rig was employed for this programme. This allowed for a surface defect to be seeded onto the test-rig. The investigation presented is part of an on-going attempt to develop the non-destructive technique of AE for assessing the surface integrity of rail-track. The AE technique is not new but the application in this particular instance is unique. It is concluded that the AE technique offers a complementary tool for rail track defect detection.
机译:鉴于铁路行业最近发生的事故,对轨道机械完整性的评估至关重要。由于滚动接触疲劳和表面磨损,这包括了轨道的完整性。尽管采用了多种技术进行裂纹检测,但显然已经遗漏了一些缺陷。在欧洲,每年要破坏100多条铁路,欧盟内部的铁路维护成本估计为每年3亿欧元[Inst Mech Engrs 216(2001)249]。 2000年10月在哈特菲尔德发生的火车脱轨事件,是火车断轨未发现的悲惨例子。本文介绍了声发射(AE)在铁路轨道缺陷诊断中的适用性的实验研究。该计划采用了实验性试验台。这允许将表面缺陷播种到测试设备上。提出的调查是开发AE的无损技术以评估轨道表面完整性的正在进行的尝试的一部分。 AE技术不是新技术,但在此特定实例中的应用程序是唯一的。结论是,AE技术为铁轨缺陷检测提供了补充工具。

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