Surface Eddy Current Probes: Excitation Systems of the Optimal Electromagnetic Field (Review)

Development of technical tools with improved metrological and operational characteristics is the actual problem of the eddy current testing. Ensuring the optimal distribution of the electromagnetic excitation field in the testing zone carries out confident detection of the defects and determination...

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Main Authors: V. Ya. Halchenko, R. V. Trembovetskaya, V. V. Tychkov
Format: Article
Language:English
Published: Belarusian National Technical University 2020-06-01
Series:Pribory i Metody Izmerenij
Subjects:
Online Access:https://pimi.bntu.by/jour/article/view/646
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spelling doaj-262a9208c260484d90d2e6fc5780f17c2021-07-29T08:39:11ZengBelarusian National Technical UniversityPribory i Metody Izmerenij2220-95062414-04732020-06-011129110410.21122/2220-9506-2020-11-2-91-104507Surface Eddy Current Probes: Excitation Systems of the Optimal Electromagnetic Field (Review)V. Ya. Halchenko0R. V. Trembovetskaya1V. V. Tychkov2Cherkasy State Technological UniversityCherkasy State Technological UniversityCherkasy State Technological UniversityDevelopment of technical tools with improved metrological and operational characteristics is the actual problem of the eddy current testing. Ensuring the optimal distribution of the electromagnetic excitation field in the testing zone carries out confident detection of the defects and determination of their geometrical parameters by means of eddy current testing. The purpose of the work was to conduct an analysis of scientific and technical information in the field of eddy current testing to study of the use of electromagnetic excitation fields with a priori specified properties, as well as to generalize and systematize the accumulated experience and approaches to conduct theoretical research in this direction.A review of publications in the field of non-destructive electromagnetic testing devoted to the improvement of the excitation systems of eddy current flaw probes was carried out. The authors considered approaches in which a uniform distribution of the electromagnetic field on the control object surface was achieved by linear and non-linear optimal synthesis of excitation systems, provided the immobility of the probe relative to the testing object. Analysis of eddy current probe designs with a homogeneous excitation field created by circular, rectangular tangential and normal coils, as well as by creating a rotational excitation field was carried out. The authors studied designs of the excitation coils of probes with fields of complex configuration characterized by the original fractal geometry which can increase the probability of identifying defects that were not amenable to detection by classical probes.Studies that suggested the formation of optimal configuration fields in a given area using magnetic cores, field concentrators made of conductive materials and specially shaped screens were analyzed. The authors studied approaches to the implementation of the optimal synthesis of excitation systems of probes with uniform sensitivity in the testing zone using surrogate optimization for cases of moving testing objects taking into account the speed effect.The experience, as well as the results of theoretical studies devoted to the problem of designing eddy current probes with uniform sensitivity in the testing zone due to the uniform density distribution of the induced currents flowing in the object were generalized and systematized. As a result, the classification of probes on a number of features that characterize the excitation systems was proposed.https://pimi.bntu.by/jour/article/view/646eddy current probeoptimal electromagnetic excitation fielduniform eddy current density distributionuniform sensitivity
collection DOAJ
language English
format Article
sources DOAJ
author V. Ya. Halchenko
R. V. Trembovetskaya
V. V. Tychkov
spellingShingle V. Ya. Halchenko
R. V. Trembovetskaya
V. V. Tychkov
Surface Eddy Current Probes: Excitation Systems of the Optimal Electromagnetic Field (Review)
Pribory i Metody Izmerenij
eddy current probe
optimal electromagnetic excitation field
uniform eddy current density distribution
uniform sensitivity
author_facet V. Ya. Halchenko
R. V. Trembovetskaya
V. V. Tychkov
author_sort V. Ya. Halchenko
title Surface Eddy Current Probes: Excitation Systems of the Optimal Electromagnetic Field (Review)
title_short Surface Eddy Current Probes: Excitation Systems of the Optimal Electromagnetic Field (Review)
title_full Surface Eddy Current Probes: Excitation Systems of the Optimal Electromagnetic Field (Review)
title_fullStr Surface Eddy Current Probes: Excitation Systems of the Optimal Electromagnetic Field (Review)
title_full_unstemmed Surface Eddy Current Probes: Excitation Systems of the Optimal Electromagnetic Field (Review)
title_sort surface eddy current probes: excitation systems of the optimal electromagnetic field (review)
publisher Belarusian National Technical University
series Pribory i Metody Izmerenij
issn 2220-9506
2414-0473
publishDate 2020-06-01
description Development of technical tools with improved metrological and operational characteristics is the actual problem of the eddy current testing. Ensuring the optimal distribution of the electromagnetic excitation field in the testing zone carries out confident detection of the defects and determination of their geometrical parameters by means of eddy current testing. The purpose of the work was to conduct an analysis of scientific and technical information in the field of eddy current testing to study of the use of electromagnetic excitation fields with a priori specified properties, as well as to generalize and systematize the accumulated experience and approaches to conduct theoretical research in this direction.A review of publications in the field of non-destructive electromagnetic testing devoted to the improvement of the excitation systems of eddy current flaw probes was carried out. The authors considered approaches in which a uniform distribution of the electromagnetic field on the control object surface was achieved by linear and non-linear optimal synthesis of excitation systems, provided the immobility of the probe relative to the testing object. Analysis of eddy current probe designs with a homogeneous excitation field created by circular, rectangular tangential and normal coils, as well as by creating a rotational excitation field was carried out. The authors studied designs of the excitation coils of probes with fields of complex configuration characterized by the original fractal geometry which can increase the probability of identifying defects that were not amenable to detection by classical probes.Studies that suggested the formation of optimal configuration fields in a given area using magnetic cores, field concentrators made of conductive materials and specially shaped screens were analyzed. The authors studied approaches to the implementation of the optimal synthesis of excitation systems of probes with uniform sensitivity in the testing zone using surrogate optimization for cases of moving testing objects taking into account the speed effect.The experience, as well as the results of theoretical studies devoted to the problem of designing eddy current probes with uniform sensitivity in the testing zone due to the uniform density distribution of the induced currents flowing in the object were generalized and systematized. As a result, the classification of probes on a number of features that characterize the excitation systems was proposed.
topic eddy current probe
optimal electromagnetic excitation field
uniform eddy current density distribution
uniform sensitivity
url https://pimi.bntu.by/jour/article/view/646
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