Eddy Current Testing of Conductive Coatings Using a Pot-Core Sensor

被引:8
|
作者
Tytko, Grzegorz [1 ]
机构
[1] Silesian Tech Univ, Fac Automat Control Elect & Comp Sci, Akad 16, PL-44100 Gliwice, Poland
关键词
eddy current testing; pot-core sensor; coatings; analytical modeling; sensor impedance; truncated region eigenfunction expansion method; thermal barrier coating; INDUCTANCE; MODEL; COIL; THICKNESS;
D O I
10.3390/s23021042
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Conductors consisting of thin layers are commonly used in many industries as protective, insulating or thermal barrier coatings (TBC). Nondestructive testing of these types of structures allows one to determine their dimensions and technical condition, while also detecting defects, which significantly reduces the risk of failures and accidents. This work presents an eddy current system for testing thin layers and coatings, which has never been presented before. It consists of an analytical model and a pot-core sensor. The analytical model was derived through the employment of the truncated region eigenfunction expansion (TREE) method. The final formulas for the sensor impedance have been presented in a closed form and implemented in Matlab. The results of the calculations of the pot-core sensor impedance for thin layers with a thickness above 0.1 mm were compared with the measurement results. The calculations made for the TBC were verified with a numerical model created using the finite element method (FEM) in Comsol Multiphysics. In all the cases, the error in determining changes in the components of the pot-core sensor impedance was less than 4%. At the same time, it was shown that the sensitivity of the applied pot-core sensor in the case of thin-layer testing is much higher than the sensitivity of the air-core sensor and the I-core sensor.
引用
收藏
页数:12
相关论文
共 50 条
  • [21] Inversion of eddy current data for conductive films and coatings thickness and conductivity measurement
    deHalleux, B
    Ptchelintsev, A
    REVIEW OF PROGRESS IN QUANTITATIVE NONDESTRUCTIVE EVALUATION, VOLS 16A AND 16B, 1997, 16 : 1641 - 1647
  • [22] Solution of the reverse problem of the eddy current location as applied to articles with conductive coatings
    Sandovskii, V.A.
    Dyakin, V.V.
    Kaibicheva, S.L.
    Defektoskopiya, 1998, (05): : 41 - 49
  • [23] Efficient eddy current models for evaluation of thin conductive coatings on ferromagnetic substrates
    de Halleux, B
    Ptchelintsev, A
    REVIEW OF PROGRESS IN QUANTITATIVE NONDESTRUCTIVE EVALUATION, VOLS 17A AND 17B, 1998, : 1307 - 1313
  • [24] Metamaterial-Core Probes for Nondestructive Eddy Current Testing
    Gong, Zhi
    Yang, Shiyou
    IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2021, 70
  • [25] Evaluation of Defects of Thermal Barrier Coatings by Thermal Shock Test Using Eddy Current Testing
    Heo, Tae Hoon
    Cho, Younho
    Lee, Joon Hyun
    Oh, Jeong Seok
    Lee, Koo Hyun
    JOURNAL OF THE KOREAN SOCIETY FOR NONDESTRUCTIVE TESTING, 2009, 29 (05) : 450 - 457
  • [27] GMR line sensor and its application to Eddy current testing
    Wakiwaka, H
    Kataoka, Y
    Ming, CX
    Shinoura, O
    Yamada, S
    ICEMI'2003: PROCEEDINGS OF THE SIXTH INTERNATIONAL CONFERENCE ON ELECTRONIC MEASUREMENT & INSTRUMENTS, VOLS 1-3, 2003, : 808 - 812
  • [28] Eddy current testing by upgraded microloop magnetic sensor array
    Uesaka, M
    Hakuta, K
    Miya, K
    Aoki, K
    Takahashi, A
    ELECTRICAL ENGINEERING IN JAPAN, 1996, 116 (01) : 80 - 93
  • [29] Eddy current testing by upgraded microloop magnetic sensor array
    Uesaka, Mitsuru
    Hakuta, Kazumi
    Miya, Kenzo
    Aoki, Kazuhiko
    Takahashi, Ayumu
    Electrical Engineering in Japan (English translation of Denki Gakkai Ronbunshi), 1996, 116 (01): : 80 - 93
  • [30] Eddy-current testing with GMR magnetic sensor arrays
    Smith, CH
    Schneider, RW
    Dogaru, T
    Smith, ST
    REVIEW OF PROGRESS IN QUANTITATIVE NONDESTRUCTIVE EVALUATION, VOLS 23A AND 23B, 2004, 23 : 406 - 413