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DOI: 10.14489/td.2026.09.pp.029-037
Vorobyov A. A., Zagorodny N. A., Savchenko-Belsky V. Yu., Pokrovskaya O. D., Benevolensky S. B., Bludyan N. O., Efimov A.G. MAGNETIC MONITORING OF THE STRESS-STRAIN STATE OF METAL STRUCTURES OF ESCALATORS IN THE SUBWAY (pp. 29-37)
Abstract. The purpose of the research was to develop methodological guidelines for the magnetic control of the stress-strain state of metal structures of escalators in the subway. It is shown that the coercive force method can be successfully applied to control the stress-strain state of metal, the level of plastic deformation and accumulated damage to the most loaded components of metal structures operating under conditions of prolonged cyclic loading. The basics of applying the coercive force method to control the stress-strain state, the requirements for the control procedure and the non-destructive testing tools used are considered.
Keywords: coercive force method, magnetic control, magnetic structroscopy of metal structures, escalator, stress-strain state.
A. A. Vorobyov (St. Petersburg State University of Communications of Emperor Alexander I, St. Petersburg, Russia) E-mail:
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N. A. Zagorodny (Transport and Technological Institute, Belgorod State Technological University named after V.G. Shukhov, Belgorod, Russia) E-mail:
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V. Yu. Savchenko-Belsky (State University of Management, Moscow, Russia) E-mail:
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O. D. Pokrovskaya (State University of Management, Moscow, Russia, Moscow Automobile and Highway State Technical University, Moscow, Russia) E-mail:
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S. B. Benevolensky (Scientific Research Institute – Republican Research Scientific and Consulting Center of Expertise (Federal State Budgetary Budgetary Institution of the Scientific Research Institute of the Russian Academy of Sciences), Moscow, Russia) E-mail:
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N. O. Bludyan (State Unitary Enterprise Mosgortrans, Moscow, Russia) E-mail:
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A.G. Efimov (JSC "NIIIN MNPO "SPEKTR", Moscow, Russia) E-mail:
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1. Gorkunov, E. S., Fedorov, V. P., Bukhvalov, A. B., & Veselov, I. N. (1997). Modeling of deformation diagram based on measurement of its magnetic characteristics. Defektoskopiya, (4), 87–95. [in Russian language]. 2. Kuleev, V. G., & Gorkunov, E. S. (1997). Mechanisms of influence of internal and external stresses on the coercive force of ferromagnetic steels. Defektoskopiya, (11), 11–18. [in Russian language]. 3. Uglov, A. L., Mishakin, V. V., & Popov, B. E. (1997). Detection of fatigue damage by acoustic method. Defektoskopiya, (11), 60–64. [in Russian language]. 4. Popov, B. E., Kotelnikov, V. S., Levin, E. A., et al. (2003). Practice of magnetic diagnostics of lifting structures during industrial safety expertise. Pod"yomnye Sooruzheniya. Spetsial'naya Tekhnika, (6), 22–23. [in Russian language]. 5. Trufyakov, V. I., Dvoretskii, V. I., & Mikheev, P. P. (1990). Strength of welded joints under variable loads. Naukova Dumka. [in Russian language]. 6. Kovalchuk, V. S. (1998). Determination of cyclic durability of metals under two frequency low cycle loading. Avtomaticheskaya Svarka, (9), 12–14. [in Russian language]. 7. Lo, C. C. H., Ring, A. P., Snyder, J. E., & Jiles, D. C. (2005). Improvement of magnetomechanical properties of cobalt ferrite by magnetic annealing. IEEE Transactions on Magnetics, 41, 3676–3678. https://doi.org/10.1109/TMAG.2005.854790 8. Novikov, V. F., Yatsenko, T. A., & Bakharеv, M. S. (2001). Dependence of coercive force of low carbon steels on uniaxial stresses. Defektoskopiya, (4), 51–57. [in Russian language]. 9. Zagrebelyi, V. I. (1999). Magnetic control of stress strain state of welded joints and steel metal structures. Determination of their residual life. Tekhnicheskaya Diagnostika i Nerazrushayushchii Kontrol, (4), 45–52. [in Russian language]. 10. Aginei, R. V. (2005). Development of a methodology for assessing the stress state of oil and gas pipelines by the coercive force of metal [Candidate's dissertation]. Ukhta. [in Russian language]. 11. Mikheev, M. N., & Gorkunov, E. S. (1993). Magnetic methods of structural analysis and nondestructive testing. Nauka. [in Russian language]. 12. Berdnik, M. M. (2010). Development of a method for assessing the stress strain state of oil and gas pipelines by the coercive force of metal [Candidate's dissertation]. Ukhta. [in Russian language]. 13. Sandomirskii, S. G. (2016). Relationship between magnetic parameters of metal in the heat affected zone of pipe steels under shear and normal stresses. Deformatsiya i Razrushenie Materialov, (10), 30–34. [in Russian language]. 14. Sandomirskii, S. G. (2016). Relationship between magnetic parameters of pipe steel metal in a stressed state. In Proceedings of the X International Conference "Mechanics, Resource and Diagnostics of Materials and Structures" (p. 121). Ekaterinburg: IMASH UrO RAN. [in Russian language]. 15. GOST R 58599 2019. (2019). Technical diagnostics. Diagnostics of steel structures. Magnetic coercimetric method. General requirements. Standartinform. [in Russian language]. 16. STO 36554501 040 2014. (2019). Diagnostics of steel building structures. Magnetic coercimetric method. Moscow. [in Russian language]. 17. GOST R 52330 2005. (2005). Nondestructive testing. Control of stress strain state of industrial and transport facilities. General requirements. Standartinform. [in Russian language]. 18. STO 36554501 040 2014. (2014). Diagnostics of steel building structures. Magnetic coercimetric method. Kodeks. [in Russian language]. 19. RD IKTs "KRAN" 007 97 02. (1997). Magnetic control of stress strain state and residual life of lifting structures during their inspection and technical diagnostics (industrial safety expertise). Moscow. [in Russian language].
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