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Article

Mechanism of Magnetic Flux Leakage Detection Method Based on the Slotted Ferromagnetic Lift-Off Layer

1
School of Mechanical Science and Engineering, Huazhong University of Science and Technology, Wuhan 430074, China
2
Key Laboratory of Nondestructive Testing, Ministry of Education, Nanchang Hangkong University, Nanchang 330063, China
*
Author to whom correspondence should be addressed.
Sensors 2022, 22(9), 3587; https://doi.org/10.3390/s22093587
Submission received: 15 April 2022 / Revised: 4 May 2022 / Accepted: 7 May 2022 / Published: 9 May 2022
(This article belongs to the Section Industrial Sensors)

Abstract

Magnetic flux leakage (MFL) testing is widely used in non-destructive testing of ferromagnetic components. In view of the serious attenuation of the leakage magnetic field (LMF) caused by the transmission of LMF in the lift-off layer between the measuring point and the workpiece, this paper introduces an MFL detection method based on the slotted ferromagnetic lift-off layer (SFLL). The conventional non-ferromagnetic lift-off layer is changed to a ferromagnetic lift-off layer with a rectangular slot. The magnetic sensor is fixed above the slot and scans the workpiece together with the lift-off layer. First, the detection mechanism of the new method was studied by an equivalent LMF coil model. The permeability perturbation effect and the magnetization enhancement effect were analyzed in the new method. Based on the detection mechanism, the lift-off tolerance of the new method was investigated. Then, the LMF enhancement and lift-off tolerance of the new method in the steel plate detection model were studied. Finally, experiments were conducted to compare the new method with the conventional method. The simulation and experimental results show that the slotted ferromagnetic lift-off layer enhances the amplitude of the MFL signal and is tolerant to the lift-off value. This method provides a new idea for optimizing the design of the MFL sensor and improving the sensitivity of MFL detection at a large lift-off value.
Keywords: magnetic flux leakage (MFL) testing; permeability perturbation; slotted ferromagnetic lift-off layer (SFLL); leakage magnetic field (LMF) enhancement; lift-off tolerance magnetic flux leakage (MFL) testing; permeability perturbation; slotted ferromagnetic lift-off layer (SFLL); leakage magnetic field (LMF) enhancement; lift-off tolerance

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MDPI and ACS Style

Tang, J.; Wang, R.; Qiu, G.; Hu, Y.; Kang, Y. Mechanism of Magnetic Flux Leakage Detection Method Based on the Slotted Ferromagnetic Lift-Off Layer. Sensors 2022, 22, 3587. https://doi.org/10.3390/s22093587

AMA Style

Tang J, Wang R, Qiu G, Hu Y, Kang Y. Mechanism of Magnetic Flux Leakage Detection Method Based on the Slotted Ferromagnetic Lift-Off Layer. Sensors. 2022; 22(9):3587. https://doi.org/10.3390/s22093587

Chicago/Turabian Style

Tang, Jian, Rongbiao Wang, Gongzhe Qiu, Yu Hu, and Yihua Kang. 2022. "Mechanism of Magnetic Flux Leakage Detection Method Based on the Slotted Ferromagnetic Lift-Off Layer" Sensors 22, no. 9: 3587. https://doi.org/10.3390/s22093587

APA Style

Tang, J., Wang, R., Qiu, G., Hu, Y., & Kang, Y. (2022). Mechanism of Magnetic Flux Leakage Detection Method Based on the Slotted Ferromagnetic Lift-Off Layer. Sensors, 22(9), 3587. https://doi.org/10.3390/s22093587

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