Academic Journal

Model of Ferrite-cored Driver-pickup Coil Probe Application of TREE Method for Eddy Current Nondestructive Evaluation

التفاصيل البيبلوغرافية
العنوان: Model of Ferrite-cored Driver-pickup Coil Probe Application of TREE Method for Eddy Current Nondestructive Evaluation
المؤلفون: Zhang, Siquan, Ye, Chengkai
المصدر: The Applied Computational Electromagnetics Society Journal (ACES) ; ISSN 1943-5711 1054-4887
بيانات النشر: River Publishers
سنة النشر: 2022
الوصف: An analytical model of a driver-pickup coil probe, consists of a cylindrical ferrite core, located above a layered conductor is presented. The truncated region eigenfunction expansion (TREE) method is used and the solution region is truncated with a certain radius around markedasmathitalicz axis. First, the magnetic vector potential of each region of filamentary coil problem is derived and solved with variables separation method using boundary and interface conditions, and then the rectangular cross-section coil problem is solved with superposition method. The expression of induced voltage in pickup coil is obtained and can be calculated with software such as Matlab or Mathematica. Using the proposed analytical model, the influence of the excitation frequency and excitation current in the driver coil on the responses of the pickup coil is examined. Experiments are performed, and the changes of voltage induced in the pickup coil due to the conductor are measured at different excitation frequencies and excitation currents. The analytical calculation results agree with the experimental results very well, verifying the correctness of the proposed analyticalmodel.
نوع الوثيقة: article in journal/newspaper
اللغة: unknown
DOI: 10.13052/2022.aces.j.370513
الاتاحة: http://dx.doi.org/10.13052/2022.aces.j.370513
https://journals.riverpublishers.com/index.php/ACES/article/download/12705/15061
https://journals.riverpublishers.com/index.php/ACES/article/download/12705/15063
رقم الانضمام: edsbas.CB231EA5
قاعدة البيانات: BASE
الوصف
DOI:10.13052/2022.aces.j.370513