Analytical method of mutual inductance for T-R rectangular coils perpendicular to the planar medium

IF 4.1 2区 材料科学 Q1 MATERIALS SCIENCE, CHARACTERIZATION & TESTING
Dehui Wu, Yu Zhang
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引用次数: 0

Abstract

Some studies indicate that for specific defect detection in eddy current testing (ECT), the transmitter-receiver (T-R) probe models with tangential rectangular transmitter coil exhibit effective detection performance. In this context, mutual inductance being a crucial parameter. The calculation of mutual inductance for vertically oriented T-R coils is more intricate compared to that of parallel T-R coils, which is currently predominantly focused on circular mutual inductance analysis. This paper presents a closed-form formula for the mutual inductance of rectangular T-R coils oriented vertically to the conductor based on the method of the second-order vector potential approach. In this model, a form function concerning the coil's position and shape is defined, allowing convenient extension to T-R coils of arbitrary shapes and positions. Simultaneously, the validity of the theory is tested against experimental measurements on different positions and frequencies of coil systems above an aluminum plate. The results indicate good agreement between theoretical and experimental results within the 100 Hz to 100 kHz range. Consequently, this model can offer guidance for the calculation of mutual inductance for vertically oriented rectangular T-R coils in ECT.

垂直于平面介质的 T-R 矩形线圈互感的分析方法
一些研究表明,对于电涡流测试(ECT)中的特定缺陷检测,带有切向矩形发射线圈的发射器-接收器(T-R)探头模型具有有效的检测性能。在这种情况下,互感是一个关键参数。与平行 T-R 线圈相比,垂直方向 T-R 线圈的互感计算更为复杂,目前主要侧重于圆形互感分析。本文基于二阶矢量电势法,给出了垂直于导体的矩形 T-R 线圈互感的闭式计算公式。在该模型中,定义了有关线圈位置和形状的形式函数,从而可以方便地扩展到任意形状和位置的 T-R 线圈。同时,根据铝板上方线圈系统的不同位置和频率的实验测量结果,对理论的有效性进行了测试。结果表明,在 100 Hz 至 100 kHz 范围内,理论和实验结果之间的一致性很好。因此,该模型可为计算 ECT 中垂直方向矩形 T-R 线圈的互感提供指导。
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来源期刊
Ndt & E International
Ndt & E International 工程技术-材料科学:表征与测试
CiteScore
7.20
自引率
9.50%
发文量
121
审稿时长
55 days
期刊介绍: NDT&E international publishes peer-reviewed results of original research and development in all categories of the fields of nondestructive testing and evaluation including ultrasonics, electromagnetics, radiography, optical and thermal methods. In addition to traditional NDE topics, the emerging technology area of inspection of civil structures and materials is also emphasized. The journal publishes original papers on research and development of new inspection techniques and methods, as well as on novel and innovative applications of established methods. Papers on NDE sensors and their applications both for inspection and process control, as well as papers describing novel NDE systems for structural health monitoring and their performance in industrial settings are also considered. Other regular features include international news, new equipment and a calendar of forthcoming worldwide meetings. This journal is listed in Current Contents.
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