Title :
Low-Frequency Eddy Current Imaging Using MR Sensor Detecting Tangential Magnetic Field Components for Nondestructive Evaluation
Author :
Tsukada, Keiji ; Kiwa, Toshihiko ; Kawata, Tomoaki ; Ishihara, Yudai
Author_Institution :
Dept. of Electr. & Electron. Eng., Okayama Univ.
Abstract :
An eddy-current distribution imaging system using a wide-area magnetic field exposure has been developed. This system can be employed to detect deep metal cracks using a magnetic resistive (MR) sensor. The measuring system consists of the exposure coil, MR sensors, measuring circuits, lock-in amplifier, xy stage, and a personal computer. To detect the eddy current distribution, the imaging system uses a pair of MR sensors that detect the x and y magnetic field components parallel to the metal surface. The system operates at a low-frequency range in order to obtain depth of penetration. An artificial defect consisting of a multilayer Al substrate sample with a bottom half slit was measured to test the system. The change in the eddy current distribution image due to the presence of the flaw was obtained. In particular, it was determined that the detection of the slit depth was improved by this lower exposure frequency
Keywords :
current distribution; eddy current testing; imaging; magnetic sensors; eddy-current distribution imaging system; exposure coil; lock-in amplifier; magnetic resistive sensor; measuring circuits; metal cracks detection; nondestructive evaluation; personal computer; tangential magnetic field components detection; xy stage; Amplifiers; Circuits; Coils; Eddy currents; Image sensors; Magnetic field measurement; Magnetic multilayers; Magnetic sensors; Microcomputers; Sensor systems; Eddy current; imaging; low frequency; nondestructive evaluation;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2006.879754