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Rotating Electromagnetic Field for Crack Detection in Railway Tracks

机译:旋转电磁场在铁路轨道裂纹检测中的应用

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The main problem about a railway analysis is detection of cracks in the structure. If these deficiencies are not controlled at early stages they might cause huge economical problems affecting the rail network (unexpected requisition of spare parts, handling of incident and/or accidents). Within this framework, the early and continuous use of Non Destructive Tests can be useful. In this context, Eddy Current Testing is increasing in importance and popularity. Particularly, in this paper we exploit the measure of normal component, with respect to the scanned surface, of magnetic field. Whilst the scientific literature proposes a lot of solutions for detecting sub-superficial defects, an open problem is related to the geometrical complexity of the structure and the relevant difficulty of crack detection. In this paper, we propose a Finite Element Method based approach for modelling a fast and accurate evaluation of the defect in railways tracks. The modelled system is strongly versatile and the choice of electrical parameters affect the design of new probes for this kind of inspection. In particular, we propose a solution exploiting a rotating electromagnetic field with very encouraging results: The proposed model is able to recognize deep and surface cracks even if their orientations is vertical to the longitudinal direction of the sensor.
机译:铁路分析的主要问题是检测结构中的裂缝。如果这些缺陷不能在早期得到控制,则可能会导致巨大的经济问题,影响铁路网络(意外地采购备件,处理事件和/或事故)。在此框架内,尽早并持续使用无损检测可能会很有用。在这种情况下,涡流检测的重要性和受欢迎程度日益提高。特别是,在本文中,我们利用磁场相对于扫描表面的法向分量进行测量。尽管科学文献提出了许多用于检测表面下缺陷的解决方案,但是一个开放的问题与结构的几何复杂性以及裂纹检测的相关难度有关。在本文中,我们提出了一种基于有限元方法的方法,用于对铁路轨道的缺陷进行快速而准确的评估。建模的系统具有很强的通用性,并且电气参数的选择会影响这种检查的新探头的设计。特别是,我们提出了一种利用旋转电磁场的解决方案,并取得了令人鼓舞的结果:所提出的模型能够识别深层和表面裂纹,即使它们的方向垂直于传感器的纵向也是如此。

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