AC-MFL testing method for surface crack on reground billets using flexible parallel-cable-based probe

NDT & E International - Tập 139 - Trang 102928 - 2023
Shenghan Wang1, Yihua Kang1, Bo Feng1, Yanting Chen1, Wei Wu2, Changcheng Li2
1School of Mechanical Science and Engineering, Huazhong University of Science and Technology, Wuhan, China
2HUAYU-EMT Detection Equipment Co., LTD, Wuhan, China

Tài liệu tham khảo

Hamia, 2014, Eddy-current non-destructive testing system for the determination of crack orientation, NDT E Int, 61, 24, 10.1016/j.ndteint.2013.09.005 Hwang, 2009, The application of a differential-type Hall sensors array to the nondestructive testing of express train wheels, NDT E Int, 42, 34, 10.1016/j.ndteint.2008.08.001 Yuan, 2022, Visual and intelligent identification methods for defects in underwater structure using alternating current field measurement technique, IEEE Trans Ind Inf, 18, 3853, 10.1109/TII.2021.3117034 Feng, 2022, Theoretical analysis on the distribution of eddy current in motion-induced eddy current testing and high-speed MFL testing, J Nondestr Eval, 41, 59, 10.1007/s10921-022-00891-0 Feng, 2018, Comparison of inspecting non-ferromagnetic and ferromagnetic metals using velocity induced eddy current probe, Sensors, 18, 3199, 10.3390/s18103199 Deng, 2017, Effects of surface roughness on magnetic flux leakage testing of micro-cracks, Meas Sci Technol, 28, 10.1088/1361-6501/aa57e1 Kalyanasundaram, 2004, A simple numerical model of the apparent loss of eddy current conductivity due to surface roughness, NDT E Int, 37, 47, 10.1016/j.ndteint.2003.08.005 Wang, 2019, Influence of surface roughness on energy change of excitation process in EMAT thickness measurement, JAE, 59, 1479, 10.3233/JAE-171121 Tabatabaeenejad, 2006, Bistatic scattering from three-dimensional layered rough surfaces, IEEE Trans Geosci Rem Sens, 44, 2102, 10.1109/TGRS.2006.872140 Lawrence, 2002, Electromagnetic scattering from a dielectric cylinder buried beneath a slightly rough surface, IEEE Trans Antenn Propag, 50, 9, 10.1109/TAP.2002.802160 B.P.C. Rao, B. Raj, T. Jayakumar, P. Kalyanasundaram, W. Arnold, A new approach for restoration of eddy current images, (n.d.) 12. Feng, 2022, A review of magnetic flux leakage nondestructive testing, Materials, 15, 7362, 10.3390/ma15207362 Sun, 2013, Magnetic mechanisms of magnetic flux leakage nondestructive testing, Appl Phys Lett, 10.1063/1.4828556 Sun, 2010, Magnetic compression effect in present MFL testing sensor, Sensors Actuators A Phys, 160, 54, 10.1016/j.sna.2010.03.038 Sun, 2010, New MFL nondestructive testing method based on magnetic vacuum leakage, JME (J Med Ethics), 46, 18 Gotoh, 2002, 3-D nonlinear eddy-current analysis of alternating magnetic flux leakage testing - analysis of one crack and two cracks, IEEE Trans Magn, 38, 1209, 10.1109/20.996309 Tsuka Da, 2017, Detection of inner cracks in thick steel plates using unsaturated AC magnetic flux leakage testing with a magnetic resistance gradiometer, IEEE Trans Magn, 53, 1, 10.1109/TMAG.2017.2713880 Hayashi, 2021, Imaging of defect signal of reinforcing steel bar at high lift-off using a magnetic sensor array by unsaturated AC magnetic flux leakage testing, IEEE Trans Magn, 57, 1, 10.1109/TMAG.2020.3017722 Wang, 2020, A novel magnetic flux leakage testing method based on AC and DC composite magnetization, J Nondestr Eval, 39, 84, 10.1007/s10921-020-00730-0 Zhang, 2018, A displacement sensing method based on alternating current magnetic flux measurement, Meas Sci Technol, 29, 10.1088/1361-6501/aace30 Wang, 2021, Optimal frequency of AC magnetic flux leakage testing for detecting defect size and orientation in thick steel plates, IEEE Trans Magn, 57, 1 Wang, 2022, A novel AC-MFL probe based on the parallel cables magnetizing technique, J Nondestr Eval, 41, 39, 10.1007/s10921-022-00872-3 Sun, 2010, A new MFL principle and method based on near-zero background magnetic field, NDT E Int, 43, 348, 10.1016/j.ndteint.2010.01.005 Gotoh, 2006, Proposal of detecting method of outer side crack by alternating flux leakage testing using 3-D nonlinear FEM, IEEE Trans Magn, 42, 1415, 10.1109/TMAG.2006.870939 Zuoying, 2006, 3D FEM analysis in magnetic flux leakage method, NDT E Int, 39, 61, 10.1016/j.ndteint.2005.06.006 Peng, 2021, A simplified lift-off correction for three components of the magnetic flux leakage signal for defect detection, IEEE Trans Instrum Meas, 70, 1