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- Article name
- Methodological aspects of eddy current non-destructive testing of the presence of small-sized metal inclusions in composite structures
- Authors
- BUDADIN O. N., , oleg.budadin@yandex.ru, JSC Central Research Institute for Special Machinery, Khotkovo, Moscow Region, Russia
KOZELSKAYA S. O., , kozelskaya.Sofik1977@yandex.ru, JSC Central Research Institute for Special Machinery, Khotkovo, Moscow Region, Russia
FEDOTOV M. Yu., , fedotovmyu@gmail.com, Moscow Aviation Institute (National Research University), Moscow, Russia
KUZNETSOV A. O., , kuznetsov.anton.93@gmail.com, JSC "Central Research Institute of Special Machinery", Khotkovo, Moscow region, Russia
CHICHIGIN B. A., , boris_ch@mail.ru, National Research University "Moscow Power Engineering Institute"; JSC "All-Russian Research Institute for the Operation of Nuclear Power Plants", Moscow, Russia
MALUSHIN D. S., , box_of_mail@mail.ru, National Research University "Moscow Power Engineering Institute", Moscow, Russia
- Keywords
- eddy current testing / testing of polymer composites / diagnostics / small metal inclusions / magnetic field / quality
- Year
- 2024 Issue 1 Pages 48 - 53
- Code EDN
- UDTMTF
- Code DOI
- 10.52190/2073-2562_2023_1_48
- Abstract
- The article examines methodological aspects of applying eddy current non-destructive testing to detect small-sized metallic inclusions in composite structures in accordance with state standards. The paper provides a comprehensive analysis of modern eddy current defectoscopy methods, with special attention to the requirements imposed by state standards on non-destructive testing. The study covers the theoretical foundations of eddy current testing, the assessment of the influence of physical and geometric parameters of inclusions on the results of testing, as well as the optimization of system parameters in accordance with standards to ensure high sensitivity and accuracy in defect detection. Emphasis is placed on the significance of compliance with the requirements of standards in the conducted testing, contributing to the increased reliability and efficiency of non-destructive testing of composite structures in line with contemporary safety and quality standards. The results obtained in the study can serve as a basis for improving the practical implementation of eddy current testing in accordance with state standards.
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