Investigation of Flux Transfer along Ferrite Core of Probe Coil for Eddy Current Nondestructive Evaluation

IF 0.8 4区 工程技术 Q4 INSTRUMENTS & INSTRUMENTATION Measurement Science Review Pub Date : 2023-02-01 DOI:10.2478/msr-2023-0002
Siquan Zhang
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Abstract

Abstract A probe coil with a T-core above a layered conductor with surface hole is investigated for magnetic flux transfer along the ferrite core and enhancement of eddy currents in conductor. The cylindrical coordinate system is adopted and an artificial boundary is added to the solution domain with radius b, and the general formula for calculating the impedance of the T-core coil is derived using the truncated region eigenfunction expansion (TREE) method. For four special cases with different probe configurations, coil impedance changes due to the layered conductor and defect are calculated with Mathematica software over a frequency change ranging from 100 Hz to 20 kHz. The analytical results are in good agreement with those obtained by the finite element method and experimental measurements. The results show that under the same lift-off height and excitation frequency, the impedance change caused by the conductor or defect in the coil of long core column is greater than that of the short core column coil. It indicates that the probe coil with a long core column can transfer magnetic flux to the conductor, thereby enhancing eddy currents in the conductor.
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涡流无损检测中探头线圈铁氧体铁芯磁通传递的研究
摘要研究了一种在带表面孔的层状导体上具有T型芯的探测线圈,用于磁通沿铁氧体芯的传输和增强导体中的涡电流。采用圆柱坐标系,在半径为b的解域中添加人工边界,并使用截区本征函数展开(TREE)方法导出了计算T芯线圈阻抗的通用公式。对于具有不同探针配置的四种特殊情况,使用Mathematica软件在100Hz至20kHz的频率变化范围内计算由于分层导体和缺陷引起的线圈阻抗变化。分析结果与有限元法和实验测量结果吻合较好。结果表明,在相同的起升高度和激励频率下,长芯柱线圈中导体或缺陷引起的阻抗变化大于短芯柱线圈。这表明,具有长芯柱的探针线圈可以将磁通量传递到导体,从而增强导体中的涡电流。
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来源期刊
Measurement Science Review
Measurement Science Review INSTRUMENTS & INSTRUMENTATION-
CiteScore
2.00
自引率
11.10%
发文量
37
审稿时长
4.8 months
期刊介绍: - theory of measurement - mathematical processing of measured data - measurement uncertainty minimisation - statistical methods in data evaluation and modelling - measurement as an interdisciplinary activity - measurement science in education - medical imaging methods, image processing - biosignal measurement, processing and analysis - model based biomeasurements - neural networks in biomeasurement - telemeasurement in biomedicine - measurement in nanomedicine - measurement of basic physical quantities - magnetic and electric fields measurements - measurement of geometrical and mechanical quantities - optical measuring methods - electromagnetic compatibility - measurement in material science
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