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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02 | 05 | 2024
2014, 12 December

DOI: 10.14489/td.2014.12.pp.019-021 

Efimov A.G., Shubochkin A.E., Martyanov E.V.
MODERN EDDY CURRENT FLAW DETECTION SYSTEM FOR ROLLED STEEL
(pp. 19-21)

Abstract.  Scientific and technological progress makes the essential problems to improve product quality and production efficiency. Thereby sig-nificance and importance of non-destructive testing are increasing. There arises the problem of developing a new and modernization of ex-isting equipment. The article presents the main features of the eddy current inspection technique and deals with modern high-performance automated systems for electromagnetic nondestructive testing of rolled metal.

Keywords: eddy current non-destructive testing, automated pipe testing, defectoscopy, eddy current equipment.

 

А. G. Efimov, A. E. Shubochkin, E. V. Martyanov 
RII MSIA «Spectrum»; Moscow, Russia. E-mail: Данный адрес e-mail защищен от спам-ботов, Вам необходимо включить Javascript для его просмотра.  

 

 

1. Efimov A. G. (2012). By the influence of corrosion products and metal deposits on the detection of defects in the continuity of the electromagnetic control of steel products. Part 1. Kontrol'. Diagnostika, (1), pp. 26-33.
2. Efimov A. G. (2012). By the influence of corrosion products and metal deposits on the detection of defects in the continuity of the electromagnetic control of steel products. Part 2. Kontrol'. Diagnostika, (2), pp. 25-33.
3. Shubochkin A. E., Efimov A. G. (2011). Considering the magnetic properties of the heat affected zone of welded joints with respect to magnetic eddy-current testing of pipelines. Proceedings of the XIX All-Russian scientific and technical conference on Non-Destructive testing and technical diagnostics. Samara, pp. 373 – 375.
4. Zagidulin R. V., Muzhitskii V. F., Bakunov A. S., Shubochkin A. E. (2009). Research of vortex-current defectoscope signal in magnetization of steel articles by constant magnetic field. Kontrol'. Diagnostika, (5), pp. 8-12.
5. Efimov A. G. (2012). Eddy current probe signal distribution over steel products with an internal flaw in the applied magnetic field. Kontrol'. Diagnostika, (3), pp. 17-24.
6. Efimov A. G., Shubochkin A. E. (2013). The distribution of eddy current transducer signal superimposed on steel products with surface defect continuity finite extent. Part 1. The calculation of the magnetic moment and the field strength of the eddy currents in the metal surface defect of continuity. Kontrol'. Diagnostika, (3), pp. 47-53.
7. Efimov A. G., Shubochkin A. E. (2013). The distribution of eddy current transducer signal superimposed on steel products with surface defect continuity finite extent. Part 2. The calculation of the magnetic moment and the field strength of the eddy currents in the metal surface defect of continuity. Kontrol'. Diagnostika, (4), pp. 36-40.
8. Gerasimov V. G., Kliuev V. V., Shaternikov V. E. (2010). Methods and devices of electromagnetic testing. Moscow: Izdatel'skii dom "Spektr".
9. Bakunov A. S., Efimov A. G., Shubochkin A. E. (2011). Application of modern eddy current means to control various industrial facilities. Kontrol'. Diagnostika, (4), pp. 13-16.

 

 

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