Title :
Rotating Field EC-GMR Sensor for Crack Detection at Fastener Site in Layered Structures
Author :
Guang Yang ; Dib, Gerges ; Udpa, Lalita ; Tamburrino, Antonello ; Udpa, Satish S.
Author_Institution :
Dept. of Electr. & Comput. Eng., Michigan State Univ., East Lansing, MI, USA
Abstract :
Eddy current-based techniques have been investigated for the inspection of embedded cracks under fastener heads in riveted structures. However, these techniques are limited in their ability to detect cracks that are not perpendicular to induced current flows. Further, the presence of a steel fastener of high permeability produces a strong signal that masks relatively smaller indication from a crack. In this paper, a rotating electromagnetic field is designed to rotate the applied magnetic fields and related eddy currents electrically so that the sensor shows uniform sensitivity in detecting cracks in all radial directions around fastener sites. Giant magnetoresistive sensors are employed to image the normal component of this rotating field, to detect different crack orientations at aluminum and ferromagnetic fastener sites. Numerical model-based studies and experimental validation are presented.
Keywords :
automatic optical inspection; crack detection; eddy current testing; electromagnetic fields; fasteners; ferromagnetic materials; giant magnetoresistance; magnetic sensors; numerical analysis; steel; aluminum fastener sites; crack orientation detection; eddy current-based technique; embedded crack inspection; ferromagnetic fastener sites; giant magnetoresistive sensor; layered structure; numerical model; radial directions; rotating electromagnetic field; rotating field EC-GMR sensor; steel fastener; Coils; Fasteners; Magnetic resonance imaging; Magnetic sensors; Probes; Sensitivity; Eddy current; NDE; fastener hole inspection; giant magnetoresistive sensor; rotating electromagnetic field;
Journal_Title :
Sensors Journal, IEEE
DOI :
10.1109/JSEN.2014.2341653