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A Novel High Sensitivity Sensor for Remote Field Eddy Current Non-Destructive Testing Based on Orthogonal Magnetic Field

机译:基于正交磁场的新型高灵敏度传感器用于远场涡流无损检测

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摘要

Remote field eddy current is an effective non-destructive testing method for ferromagnetic tubular structures. In view of conventional sensors' disadvantages such as low signal-to-noise ratio and poor sensitivity to axial cracks, a novel high sensitivity sensor based on orthogonal magnetic field excitation is proposed. Firstly, through a three-dimensional finite element simulation, the remote field effect under orthogonal magnetic field excitation is determined, and an appropriate configuration which can generate an orthogonal magnetic field for a tubular structure is developed. Secondly, optimized selection of key parameters such as frequency, exciting currents and shielding modes is analyzed in detail, and different types of pick-up coils, including a new self-differential mode pick-up coil, are designed and analyzed. Lastly, the proposed sensor is verified experimentally by various types of defects manufactured on a section of a ferromagnetic tube. Experimental results show that the proposed novel sensor can largely improve the sensitivity of defect detection, especially for axial crack whose depth is less than 40% wall thickness, which are very difficult to detect and identify by conventional sensors. Another noteworthy advantage of the proposed sensor is that it has almost equal sensitivity to various types of defects, when a self-differential mode pick-up coil is adopted.
机译:远场涡流是一种用于铁磁管状结构的有效无损检测方法。鉴于传统传感器的缺点,如信噪比低和对轴向裂纹的敏感性差,提出了一种基于正交磁场激励的新型高灵敏度传感器。首先,通过三维有限元模拟,确定了正交磁场激励下的远场效应,并开发了一种可以为管状结构产生正交磁场的合适结构。其次,详细分析了诸如频率,励磁电流和屏蔽模式等关键参数的优化选择,并设计和分析了包括新型自差模拾波线圈在内的不同类型的拾波线圈。最后,所提出的传感器通过在铁磁管的一部分上制造的各种类型的缺陷进行了实验验证。实验结果表明,提出的新型传感器可以大大提高缺陷检测的灵敏度,特别是对于深度小于壁厚40%的轴向裂纹,传统传感器很难检测和识别。所提出的传感器的另一个值得注意的优点是,当采用自差模拾取线圈时,它对各种类型的缺陷具有几乎相等的灵敏度。

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