Low Field Methods (GMR, Hall Probes, etc.)
Author:
Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-319-26553-7_32
Reference124 articles.
1. Afzal M, Udpa S (2002) Advanced signal processing of magnetic flux leakage data obtained from seamless gas pipeline. NDT E Int 35:449–457
2. Aguila-Muñoz J, Espina-Hernández JH, Pérez-Benítez JA, Caleyo F, Hallen JM (2016) A magnetic perturbation GMR-based probe for the nondestructive evaluation of surface cracks in ferromagnetic steels. NDT&E Int 79:132–141
3. Arismendi NOR, Pacheco ER, López OP, Espina Hernández JH, Benitez JAP (2018) Classification of artificial near-side cracks in aluminium plates using a GMR-based eddy current probe. In: 2018 international conference on electronics, communications and computers (CONIELECOMP), Cholula, Mexico
4. Bai X, Fang Y, Lin W, Wang L, Ju BF (2014) Saliency-based defect detection in industrial images by using phase spectrum. IEEE Trans Ind Inform 10:2135–2145
5. Bailey J, Long N, Hunze A (2017) Eddy current testing with giant magnetoresistance (GMR) sensors and a pipe-encircling excitation for evaluation of corrosion under insulation. Sensors 17:2229. https://doi.org/10.3390/s17102229
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