首页> 外文会议>Instrumentation and Measurement Technology Conference, 2004. IMTC 04. Proceedings of the 21st IEEE >Validation of a coil impedance model for simultaneous measurement of electromagnetic properties and inner diameter of a conductive tube
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Validation of a coil impedance model for simultaneous measurement of electromagnetic properties and inner diameter of a conductive tube

机译:验证线圈阻抗模型以同时测量导电管的电磁性能和内径

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The remote-field eddy-current technique (RFEC) for nondestructive inspection of conductive tubes cannot differentiate inner from outer defects. Also, the measurement results are greatly affected by electromagnetic properties (electrical conductivity and magnetic permeability) of the tube. Therefore, additional, independent measurement of the electromagnetic properties as well as inner diameter is required. Commercial eddy-current systems successfully measure these parameters using a multifrequency, multicoil configuration. In this paper, we investigate the feasibility of the electromagnetic properties and inner diameter measurement with only one coil excited at one frequency. We have developed an optimization algorithm for determination of the tube properties. based on a coil impedance model. Measurements have been performed on several tubes made of different materials. The consistency of the model with the measurement results has been confirmed for investigated frequency range (1 to 50 kHz).
机译:用于导电管非破坏性检查的远场涡流技术(RFEC)无法区分内部缺陷和外部缺陷。而且,测量结果受管的电磁特性(电导率和磁导率)的影响很大。因此,需要对电磁性能以及内径进行额外的独立测量。商业涡流系统使用多频,多线圈配置成功测量了这些参数。在本文中,我们研究了仅以一个频率激励一个线圈的电磁性能和内径测量的可行性。我们已经开发出用于确定管材性能的优化算法。基于线圈阻抗模型。已经对由不同材料制成的几根管子进行了测量。在调查的频率范围(1至50 kHz)中,已经确认了模型与测量结果的一致性。

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