Журнал Российского общества по неразрушающему контролю и технической диагностике
The journal of the Russian society for non-destructive testing and technical diagnostic
 
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27 | 04 | 2024
2015, 04 April

DOI: 10.14489/td.2015.04.pp.010-017

 

Zagidulin R.V., Zagidulin T.R., Konnov V.V., Konnov A.V.
EVALUATION OF CRACK DEPTH IN THE METAL ON SIGNAL OF DIFFERENTIAL EDDY CURRENT TRANSDUCER
(pp. 10-17)

Abstract. It is considered the mathematical approach based on the principle of variability to evaluate crack depth in ametal on measured signal of a differential eddy current transducer (ECT). It is reported about obtained symbolic expression for regularization of variable of a smoothing functional whose minimum determines the depth of a crack in the metal. The settings influence on regularization variable and preciseness of crack depth evaluation. Optimum values of settings provide the highest robustness of solution obtained at high noise of measured signal. This values have been calculated. The evaluation of the depth of cracks artificially etched in the steel specimens on the signalsof differential eddy current transducer measured according tothe proposed mathematical approach showed that it has enough robustness with respect to noise and preciseness for the application of electromagnetic flaw.

Keywords: differential eddy current transducer, crack in the metal, depth of crack, sign of classification, functional, stabilizer, variable of regularization, relative error.

 

R. V. Zagidulin, T. R. Zagidulin
Ltd “NTTs “Spectr”, Ufa, Russia. E-mail: Данный адрес e-mail защищен от спам-ботов, Вам необходимо включить Javascript для его просмотра.

V. V. Konnov, A. V. Konnov
CJSC “Molniia”, Moscow, Russia

 

 

 

1. Kliuev V. V., Fedosenko Iu. K., Gerasimov V. G., Pokrovskii A. D., Ostanin Iu. Ia. (2006). Non-destructive testing. Handbook. In 8 volumes. Vol. 2. Book 2. Eddy current testing. (2nd (Revised and Supplemented) ed.). Moscow: Mashinostroenie.
2. Efimov A. G., Shubochkin A. E. (2014). Modern trends of eddy current flaw detection and defectometry. Kontrol'. Diagnostika, (3), pp. 68-72.
3. Bakunov A. S., Efimov A. G. (2009). Eddy current non-destructive testing of metal wares. Kontrol'. Diagnostika, (4), pp. 21-22.
4. Konnov A. V., Kuznetsov A. M., Zagidulin T. R., Zagidulin R. V. (2013). Electromagnetic surface inspection of steel pipelines in the process of re insulation. International scientific and technical conference «The achievements of NDT physics», Republic of Belarus, Minsk, 15 October 2013, pp. 182-189.
5. Konnov V. V., Konnov A. V., Kuznetsov A. M., Zagidulin T. R. (2014). Automated electromagnetic scanner-flaw detector ASD «Vikhr’-1». 20th All-Russian scientific and technical conference on NDT and technical diagnostics: ab-stracts, Moscow, 3 – 6 March 2014, Moscow: Izdatel'skii dom «Spektr», pp. 64 – 67.
6. Zagidulin R. V., Efimov A. G. (2011). Digital signal analysis in electromagnetic testing. The physical principles and practical applications. Saarbrücken, Germany: LAP Lambert Academic Publishing GmbH & Co. KG.
7. Babadzhanov L. S., Babadzhanova M. L., Bakunov A. S., Efimov A. G. (2011). On the question of eddy current flaw detectors verification. Kontrol'. Diagnostika, (12), pp. 70-72.
8. Zagidulin R. V., Zagidulin T. R., Konnov A. V. (2013). Some features of eddy current transducer signal dis-tribution over discontinuity of metal within applied constant magnetic field. Kontrol'. Diagnostika, (8), pp. 16-21.
9. Organization and conducting of technical diagnos-tics of linear parts of main gas pipelines with outer scanners-detectors in the process of overhaul. General requirements. (2012). Standard No. R Gazprom 2-2.3-569–2011. Moscow: JSC «Gazprom».
10. Methodological guidelines for the diagnostic exam-ination of the linear parts of main gas pipelines. (2008). Standard No. STO Gazprom 2-2.3-095–2007. Moscow: JSC «Gazprom».
11. Mitorkhin M. Iu., Veliiulin I. I., Kas'ianov A. N. et al. (2010). Analysis of tools and technologies of technical inspection and rejection of the pipe in the process of overhaul the linear parts of main gas pipelines of JSC «Gazprom». Territoriia «Neftegaz», (12), pp. 57-60.
12. Arsenin V. Ia. (1974). Methods of mathematical physics and special functions. Moscow: Nauka.
13. Gorelik A. L., Skripkin V. A. (1989). Methods of recognition. Moscow: Vysshaia shkola.
14. Andreeva E. A., Tsiruleva V. M. (2006). The calcu-lus of variations and optimization techniques. Moscow: Vysshaia shkola.

 

 

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