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Laser ultrasonics inspection for defect evaluation on train wheel

机译:激光超声检查以评估火车车轮上的缺陷

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摘要

Passengers' safety and in-service life of wheelset axles play an important role in railway vehicles. For this reason, periodic inspections are necessary. Among non-destructive techniques, ultrasonic ones are widely applied in this field. The main disadvantage of conventional ultrasonic techniques is that the overall inspection of wheels requires the train to be put out-of-service and disassembly each part, which is time-consuming and expensive.In this paper, a non-conventional non-contact laser ultrasonic inspection for train wheels is proposed. The proposed method uses a laser interferometer to receive the ultrasonic wave without contact. The receiving system allows choosing the distance between the surface to be inspected and the interferometer, overcoming any encumbrance issue. The experimental investigation is carried out on standard-reproduced defects in order to evaluate the reliability and the accuracy of the technique and to verify its applicability for railway components, as wheels, which have a complex geometry. The experimental setup consists of a pulsed laser for the ultrasonic wave generation. The receiving unit combines a continuous-wave laser and an interferometer in order to acquire the surface out-of-plane displacements. Surface and internal standard defects are detected by collecting all the A scans in a B-scan map. The results are promising for the application of the laser technique to detect both surface and internal defects on in-service components.
机译:轮对轴的乘客安全性和使用寿命在铁路车辆中起着重要作用。因此,必须进行定期检查。在无损技术中,超声技术已广泛应用于该领域。传统超声技术的主要缺点是对车轮进行全面检查需要将火车停运并拆卸每个零件,这既费时又昂贵。本文采用一种非常规的非接触式激光提出了对车轮的超声波检查。所提出的方法使用激光干涉仪无接触地接收超声波。接收系统允许选择要检查的表面和干涉仪之间的距离,从而克服了任何障碍。对标准再现的缺陷进行了实验研究,以评估该技术的可靠性和准确性,并验证其在具有复杂几何形状的铁路部件(如车轮)中的适用性。实验装置包括用于产生超声波的脉冲激光器。接收单元将连续波激光器和干涉仪组合在一起,以获取表面平面外位移。通过收集B扫描图中的所有A扫描来检测表面和内标缺陷。该结果对于将激光技术用于检测在役部件上的表面和内部缺陷都很有希望。

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