Affiliation:
1. College of Mechanical and Equipment Engineering, Hebei University of Engineering, Handan 056038, China
Abstract
Due to its multi-mode and dispersion characteristics, Lamb waves cause interference to signal processing, which profoundly limits their application in nondestructive testing. To resolve this issue, firstly, based on the traditional EMAT, a horizontal polarization periodic permanent magnet electromagnetic acoustic transducer (HP-PPM-EMAT) was proposed. A 2-D finite element model was then developed to compare magnetic flux density, Lorentz force, and signal strength between the traditional EMAT and the HP-PPM-EMAT. The simulation results show that the HP-PPM-EMAT enhances the A0 mode Lamb wave (A0 wave) and suppresses the S0 mode Lamb wave (S0 wave). Finally, the influence of structural parameters of the HP-PPM-EMAT on the total displacement amplitude ratio of A0 and S0 was investigated using orthogonal test theory, and the width of magnet units was improved based on the orthogonal test. The results show that the total displacement amplitude ratio of A0 to S0 of the improved HP-PPM-EMAT can be improved by a factor of 7.74 compared with that of the traditional Lamb wave EMAT, which can produce higher-purity A0 mode Lamb waves.
Funder
the National Natural Science Foundation of China
the Natural Science Foundation of Hebei Province
the Scientific and Technological Research Projects of Universities in Hebei Province
the Science and Technology Research and Development Project of Handan City
Subject
Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry
Reference34 articles.
1. The impact of magnetostriction on the transduction of normal bias field EMATs;Ribichini;Ndt E Int.,2012
2. Design of electromagnetic interference elimination circuit in electromagnetic ultrasonic detection system;Liu;J. Electrotech. Technol.,2016
3. Initial tests for designing a high temperature EMAT with pulsed electromagnet;Dixon;NDT E Int.,2010
4. Kogia, M., Gan, T.-H., Balachandran, W., Livadas, M., Kappatos, V., Szabo, I., Mohimi, A., and Round, A. (2016). High temperature shear horizontal electromagnetic acoustic transducer for guided wave inspection. Sensors, 16.
5. Effective focal area dimension optimization of shear horizontal point-focusing EMAT using orthogonal test method;Sun;IEEE Trans. Instrum. Meas.,2021