DocumentCode :
1543812
Title :
Electromagnetic nondestructive evaluation: moving HTS SQUIDs, inducing field nulling and dual frequency measurements
Author :
Carr, C. ; McKirdy, D.McA. ; Romans, E.J. ; Donaldson, G.B. ; Cochran, A.
Author_Institution :
Dept. of Phys. & Appl. Phys., Strathclyde Univ., Glasgow, UK
Volume :
7
Issue :
2
fYear :
1997
fDate :
6/1/1997 12:00:00 AM
Firstpage :
3275
Lastpage :
3278
Abstract :
We have previously shown that simple, single layer HTS SQUIDs can be used effectively in electromagnetic nondestructive evaluation (NDE) using eddy current techniques in a magnetically unshielded environment. HTS SQUID systems for NDE applications are expected to be small and portable allowing non-stationary measurements to be carried out in the Earth´s field above a stationary sample. Here we present application-oriented results showing the ability of our HTS electronic gradiometer to cope with the movement of the sensors above a series of simulated flaws in aircraft grade aluminum samples. To permit the detection of fine surface and subsurface structures we have applied active field nulling to the two SQUIDs to increase the effective signal to noise ratio. The excitation signal is applied via a non-superconducting coil to provide a lower field environment for each device. We also present results using a dual frequency eddy current technique to allow depth profiling of flaws in multilayer structures.
Keywords :
SQUID magnetometers; eddy current testing; flaw detection; high-temperature superconductors; Al; Earth field; aircraft grade aluminum; depth profiling; dual frequency measurement; eddy current technique; electromagnetic nondestructive evaluation; electronic gradiometer; flaws; inducing field nulling; moving sensor; multilayer structure; nonstationary measurement; portable single layer HTS SQUID; signal to noise ratio; Aerospace electronics; Aircraft; Aluminum; Eddy currents; Electromagnetic measurements; High temperature superconductors; Magnetic field measurement; SQUIDs; Satellite ground stations; Signal to noise ratio;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/77.622051
Filename :
622051
Link To Document :
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