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Enhanced Eddy Current Techniques for Detection of Surface-Breaking Cracks in Aircraft Structures


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[1] Hagemaier, D.J., 1991, “Nondestructive testing developments in the aircraft industry”, Materials Evaluation, 49(12), pp. 1470-1478. Search in Google Scholar

[2] Schmidt, H-J., Schmidt-Brandecker, B., Tober. G., 2000, “Design of modern aircraft structure and the role of NDI”, Insight, 42(3), pp. 141-147. Search in Google Scholar

[3] Ball, D. L., 2003, “The Role of Nondestructive Testing in Aircraft Damage Tolerance”, Materials Evaluation, 61(7), pp. 814-818. Search in Google Scholar

[4] Libby, H. L., 1971, Introduction to Electromagnetic Non-destructive Test Methods, New-york, etc: Wiley-Interscience. Search in Google Scholar

[5] Udpa, S.S., More P.O., Eds, 2004, Nondestructive testing handbook (third edition), 5, Electromagnetic testing, American Society for NDT. Search in Google Scholar

[6] Uchanin, V., 2020, “Detection of the fatigue cracks initiated near the rivet holes by eddy current inspection techniques”, Transactions on Aerospace Research, 1(258), pp. 47-58.10.2478/tar-2020-0010 Search in Google Scholar

[7] Ostash, O., Fedirko, V., Uchanin, V. Bychkov, S., Moliar O., Semenets, O., Kravets V., Derecha V., 2007, Fracture mechanics and strength of materials, Vol. 5. Strength and durability of airplane materials and structural elements (in Ukrainian), Lviv, Spolom. Search in Google Scholar

[8] Ostash, O., Uchanin, V., Semenets, O., Holovatyuk, y., Kovalchuk, L., Derecha, V., 2018, “Evaluation of aluminium alloys degradation in aging aircraft”, Research in Nondestructive Evaluation, 29(3), pp. 156-166.10.1080/09349847.2017.1302622 Search in Google Scholar

[9] Hagemaier, D.J., 1991, “Application of crack detection to aircraft structures, Fatigue crack measurement: techniques and applications (Eds K.J. Marsh, R.A. Smith and R.O. Ritchie), Warley: EMAS, pp. 419-455. Search in Google Scholar

[10] Uchanin, V., Derecha, V., 2006, “Eddy current method for detection of surface defects in aircraft units in in-service conditions” (in Russian), Technical Diagnostic and Nondestructive Testing (Kyiv), 4, pp. 20-28. Search in Google Scholar

[11] Uchanin, V., 2010, “Surface type eddy current probes: extended classification, comparative analysis and typical examples of realization” (in Russian), Technical Diagnostic and Nondestructive Testing (Kyiv), 4, pp. 24-29. Search in Google Scholar

[12] Uchanin, V., 2018, “Prepositions on improvement of the classification of eddy current transducers (in Ukrainian), Technical Diagnostic and Nondestructive Testing (Kyiv), 2, pp. 69-74.10.15407/tdnk2018.02.10 Search in Google Scholar

[13] Uchanin, V., Aleksandrov, S., Tsiganov, V., 2009, “Eddy current flaw detection of aircraft engines in in-service and repair conditions” (in Russian), Bulletin of Engine-building, 2, pp. 151-155. Search in Google Scholar

[14] Grubinskas, R.C., 1966, “An Evaluation of Probe Coils with Ferrite Cores for Use in Electromagnetic Testing”, Materials evaluation, 10, 557-563. Search in Google Scholar

[15] Capobianco, T.E., 1987, “Field mapping and performance characterization of commercial eddy current probes”, Review of Progress in quantitative Nondestructive Evaluation, 6A, New york: Plenum Press, pp. 687-694.10.1007/978-1-4613-1893-4_77 Search in Google Scholar

[16] Capobianco, T.E., Splett, J.D., Iyer, H.K., 1990, “Eddy Current Probe Sensitivity as a Function of Coil Construction Parameters”. Research in Nondestructive Evaluation, 2, pp. 169-186.10.1080/09349849008968032 Search in Google Scholar

[17] Uchanin, V., 2012, “Method of eddy current probe efficiency determination” (in Ukrainian), Ukrainian patent 42132. Search in Google Scholar

[18] Uchanin, V., 2012, “Invariant efficiency parameter of eddy-current probes for nondestructive testing”, Materials Science, 48(3), pp. 408-413.10.1007/s11003-012-9520-z Search in Google Scholar

[19] Uchanin, V., 2014, “Invariant parameter for eddy current coil efficiency estimation, 11th Europ. Conf. on NDT, Prague (www.ndt.net). Search in Google Scholar

[20] Buvat, F., Pichenot, G., and Premel, D. 2005, “Eddy Current Modelling of Ferrite-cored Probes”, Review of Progress in quantitative Nondestructive Evaluation, 24, pp. 463-470.10.1063/1.1916712 Search in Google Scholar

[21] Uchanin, V., 2007, “Specific features of the space distribution of the signal of an eddy-current converter caused by cracks of different lengths”, Materials Science, 43(4), pp. 591-595.10.1007/s11003-007-0068-2 Search in Google Scholar

[22] Auld, B.A., McFetridge, G., Riaziat, M. and Jefferies, S., 1985, “Improved probe-flaw interaction modeling, inversion processing, and surface roughness clutter”, Review of Progress in quantitative Nondestructive Evaluation, 4A, pp. 623-634.10.1007/978-1-4615-9421-5_69 Search in Google Scholar

[23] Moulder, J.C., and Gerlitz, J.C., 1986, “Semi-elliptical surface flaw EC interaction and inversion: experiment”, Review of Progress in quantitative Nondestructive Evaluation, 5A, pp. 395-402.10.1007/978-1-4615-7763-8_40 Search in Google Scholar

[24] Uchanin, V., Lutsenko, G., Opanasenko, A., Dzhaganian, A. 2016, “PROMPRyLAD Family of Eddy Current Flaw Detectors – From Simple to more Complicated”, 19th World Conf. on Nondestructive Testing, Munich (www.ndt.net). Search in Google Scholar

[25] Uchanin, V., Derecha, V., Semenets, O., 2018, “Eddy current method for detection of the defects in the rivet area of aircraft structures” (in Ukrainian), Ukrainian patent 125679. Search in Google Scholar

[26] Uchanin, V., 2010, “Self-generator type eddy current flaw detectors: main principles, classification, comparative analysis” (in Russian), Technical Diagnostic and Nondestructive Testing (Kyiv), 2, pp. 18-23. Search in Google Scholar

[27] Uchanin, V., Cherlenevskiy, V., 2008, “Eddy current flaw detector” (in Ukrainian), Ukrainian patent 39207. Search in Google Scholar

[28] Uchanin, V., Cherlenevskiy, V., 2009, “Eddy current self-generator type flaw detector” (in Ukrainian), Ukrainian patent 39217. Search in Google Scholar

[29] Uchanin, V., Cherlenevskiy, V., 2009, “Instrumentation for eddy current testing” (in Ukrainian), Ukrainian patent 42132. Search in Google Scholar

eISSN:
2545-2835
Język:
Angielski
Częstotliwość wydawania:
4 razy w roku
Dziedziny czasopisma:
Engineering, Introductions and Overviews, other, Geosciences, Materials Sciences, Physics