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The Structural health condition monitoring of rail steel using acoustic emission techniques

机译:声发射技术轨钢的结构健康状况监测

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This paper discusses the work towards the development of a sound methodology for the application of acoustic emission techniques for detecting and monitoring crack growth in rail steels. At the moment rails that are found to be damaged on the network are not immediately replaced. Instead a speed restriction is imposed and affected rails are clamped with special fish-plates until they are replaced, usually after a period of a few days. Unfortunately damaged rails prior to their replacement cannot be reliably assessed for further crack growth with any of the conventional non-destructive evaluation techniques (e.g. ultrasonic) and this is the reason that a speed restriction is imposed. Acoustic emission techniques could potentially be applied for the detection as well as continuous monitoring of further crack growth therefore removing the need of imposing strict speed restrictions which can be as low as 20MPH (32km/h). In order to validate the potential of the AE technique tests are carried out under laboratory conditions on three and four-point bending samples. Various signal processing methods will be examined using AEWin and Noesis software supplied by PAC and Envirocoustics respectively.
机译:本文讨论了在轨道钢中探测和监测裂纹增长的应用声发射技术应用于应用声学发射技术的努力发展。在未在网络上损坏的瞬间轨道,不会立即更换。相反,施加速度限制,并且受影响的导轨用特殊的鱼油夹紧,直到它们被更换,通常在几天后。不幸的是,在替代之前的损坏导轨不能可靠地评估进一步的裂纹增长,以便与任何传统的非破坏性评估技术(例如超声波)进行进一步的裂缝增长,这是施加速度限制的原因。可以应用声发射技术来施加检测,以及对进一步裂纹增长的连续监测,因此可以消除可能施加严格的速度限制,这可以低至20mph(32km / h)。为了验证AE技术测试的潜力在实验室条件下在三个和四点弯曲样品下进行。将使用PAC和环境技术提供的AEWIN和Noisies软件来检查各种信号处理方法。

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