DocumentCode :
42296
Title :
Theoretical Analyses of MFL Signal Affected by Discontinuity Orientation and Sensor-Scanning Direction
Author :
Jianbo Wu ; Yanhua Sun ; Yihua Kang ; Yun Yang
Author_Institution :
Sch. of Manuf. Sci. & Eng., Sichuan Univ., Chengdu, China
Volume :
51
Issue :
1
fYear :
2015
fDate :
Jan. 2015
Firstpage :
1
Lastpage :
7
Abstract :
To improve the accuracy of the magnetic flux leakage (MFL) nondestructive testing in practical applications, we analyzed the MFL signal characteristics affected by discontinuity orientation and sensor-scanning direction. On the basis of magnetic dipole theory, the descriptions for the MFL field distributions of discontinuities in arbitrary orientations were established, indicating that the MFL density increases with the discontinuity orientation increasing from 0 to $pi $ /2 and that magnetic flux always flows through the discontinuity perpendicularly, which was verified by relevant experiments. Further, the influence of the sensor-scanning direction on MFL signal features was analyzed and it was found that the MFL component signal parallel to scanning direction increases, the MFL component signal perpendicular to scanning direction falls, the MFL component signal perpendicular to discontinuity stays the same, and the widths of test signals become narrow, when the angle between the discontinuity orientation and sensor-scanning direction increases.
Keywords :
magnetic flux; magnetic leakage; nondestructive testing; MFL component signal; MFL density; MFL field distributions; arbitrary orientations; discontinuity orientation; magnetic dipole theory; magnetic flux leakage nondestructive testing; sensor-scanning direction; test signal widths; Educational institutions; Magnetic flux leakage; Magnetization; Saturation magnetization; Spirals; Steel; Discontinuity orientation; magnetic dipole theory; magnetic flux leakage (MFL); sensor-scanning direction; signal characteristic;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2014.2350460
Filename :
6882241
Link To Document :
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