Department of Risk Management and Environmental Sciences, Graduate School of Environmental and Information Sciences, Yokohama National University, Yokohama 240-8501, Japan.
Department of Electrical Engineering, Faculty of Engineering, Lampung University, Bandar Lampung 35141, Indonesia.
Sensors (Basel). 2019 Jan 18;19(2):397. doi: 10.3390/s19020397.
In this review, the principles to detect flaws with uniform eddy currents were presented based on the shape and orientation of the excitation coils and detection coils of the probe. Techniques are applied to detect flaws like cracks, especially on the weld zone surface, of test pieces of non-magnetic and ferromagnetic materials, and have unique features which are immune to the effects of lift-off. In the technique of interest, almost all the probe models developed are the type with tangential rectangular excitation coils. The induction condition and the flaw signal for each probe were discussed based on the shape and orientation of the excitation coils and detection coils of the probe. Finally, the challenge of increasing sensitivity to detect flaws with a uniform eddy current was also presented.
在这篇综述中,根据探头激励线圈和检测线圈的形状和方向,提出了用均匀涡流检测缺陷的原理。这些技术应用于检测非磁性和磁性材料试件的表面裂纹等缺陷,特别是在焊缝区,具有抗提离影响的独特特点。在感兴趣的技术中,几乎所有开发的探头模型都是带有切向矩形激励线圈的类型。根据探头激励线圈和检测线圈的形状和方向,讨论了每种探头的感应条件和缺陷信号。最后,还提出了提高均匀涡流检测缺陷灵敏度的挑战。