Research on the Influence of Geometric Structure Parameters of Eddy Current Testing Probe on Sensor Resolution

Author:

Song Mengmeng1,Li Mengwei12,Xiao Shungen12ORCID,Ren Jihua3

Affiliation:

1. College of Information, Mechanical and Electrical Engineering, Ningde Normal University, Ningde 352000, China

2. College of Mechanical and Electrical Engineering, Fujian Agriculture and Forestry University, Fuzhou 350000, China

3. Dongguan Xinghuo Gear Co., Ltd., Dongguan 523000, China

Abstract

To study the influence of the geometric structure of the probe coil on the electromagnetic characteristics of the eddy current probe in the process of eddy current testing, based on the principle of eddy current testing, different probe coil models were established using finite element software. These geometric structure parameters include the difference between the inner and outer radius, thickness, and equivalent radius. The magnetic field distribution around the probe is simulated and analyzed under different parameters, and the detection performance of the probe is judged in combination with the change rate of the magnetic field around the probe coil. The simulation results show that at a closer position, increasing the difference between the inner and outer radii, reducing the thickness, and reducing the equivalent radius are beneficial to improve the resolution of the probe coil. At a far position, reducing the difference between the inner and outer radii, increasing the thickness, and reducing the equivalent radius are beneficial to improve the resolution of the probe coil. At the same time, the accuracy of the simulation data is verified by comparing the theoretical values with the simulated values under different conditions. Therefore, the obtained conclusions can provide a reference and basis for the optimal design of the probe structure.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference32 articles.

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2. Shen, G. (2008, January 25–28). Progress of Nondestructive Testing and Evaluation Technology in China. Proceedings of the 17th World Conference on Nondestructive Testing, Shanghai, China.

3. Li, J., and Chen, J. (2002). NDT Brochure, Machinery Industry Press.

4. A Review of Eddy Current Nondestructive Testing Technology;Zhu;Light Ind. Technol.,2018

5. Detection of circumferential cracks in heat exchanger tubes using pulsed eddy current testing;Yu;NDT E Int.,2021

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