THE EFFECT OF CYCLIC BENDING LOADINGS ON THE RELATIVE MAGNETIC PERMEABILITY OF 12KH18N10T STEEL

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Abstract

This study examines cyclic bending fatigue effects on magnetic permeability (μ) and fracture behavior of conventionally produced and fabricated by direct energy deposition (DED) 12Х18Н10Т steel. DED specimens showed higher initial μ (suggesting presence of martensite) and faster degradation under cycling. Remarkably, some DED samples withstood threefold longer fatigue life without martensitic transformation

About the authors

Alexander Viktorovich Kochnev

IMP UB RAS

Email: kochnevav@imp.uran.ru

junior researcher of laboratory of magnetic structural analysis

Russian Federation, 620108 Yekaterinburg, Sofia Kovalevskaya str., 18

Nikita Vital'evich Gordeev

IMP UB RAS

Email: gordeevN.V@yandex.ru

engineer-researcher of laboratory of magnetic structural analysis

Russian Federation, 620108 Yekaterinburg, Sofia Kovalevskaya str., 18

Maria Sergeevna Stenina

IMP UB RAS

Email: ogneva.manunua@gmail.com

research associate of laboratory of magnetic structural analysis

Russian Federation, 620108 Yekaterinburg, Sofia Kovalevskaya str., 18

Ruslan Valisovich Mendagaliev

SPbSMTU

Email: ruslanm888@mail.ru

к.т.н., начальник отдела исследований и разработки новых материалов 

Russian Federation, 190121 Saint-Petersburg, Lotsmanskaya str., 3

Olga Klimova-Korsmik

SPbSMTU

Email: o.klimova@ltc.ru

к.т.н., начальник отделения исследований материалов

Russian Federation, 190121 Saint-Petersburg, Lotsmanskaya str., 3

Mikhail Borisovich Rigmant

IMP UB RAS

Email: rigmant@imp.uran.ru

PhD, senior researcher of laboratory of magnetic structural analysis

Russian Federation, 620108 Yekaterinburg, Sofia Kovalevskaya str., 18

Mikhail Konstantinovich Korkh

IMP UB RAS

Author for correspondence.
Email: korkhmk@imp.uran.ru

PhD, senior researcher of laboratory of magnetic structural analysis

Russian Federation, 620108 Yekaterinburg, Sofia Kovalevskaya str., 18

References

  1. Stetsenko P.N., Novikova L.M. Vliyanie uprugikh i plasticheskikh deformaciy na magnitnye svoistva austenitnoi stali tipa 1Kh18N9T // Vestnik Moskovskogo Universiteta, ser. fizika, astronomiya. 1967. No. 1. P. 65—68.
  2. Korneev A.E., Kharina I.L. Vliyanie deformatsionnogo martensita na svoistva austenitnoi stali 316L // Tyazheloe mashinostroenie. 2014. No. 11—12. P. 14—20.
  3. Puchi-Cabrera E.S., Staia M.H., Tovar C., Ochoa-Pérez E.A. High cycle fatigue of 316L stainless steel // International Journal of Fatigue. 2008. V. 30. P. 2140—2146.
  4. Berns H., Gavriljuk V.G., Nabiran N., Petrov Yu.N., Riedner S., Trophimova L.N. Fatigue and Structural Changes of High Interstitial Stainless Austenitic Steels // Steel Research International. 2010. V. 81. P. 299—307.
  5. Farrahi G.H., Minaii K., Bahai H. Fretting fatigue behavior of 316L stainless steel under combined loading conditions // International Journal of Fatigue. 2019. V. 128. P. 105206.
  6. Gordeev N.V. Stashkov A.N., Matosyan A.M., Korkh M.K., Nichipuruk A.P., Shishkin D.A., Shirinkina I.G. Magnitnye svoistva i struktura izgotovlennykh selektivnym lazernym splavleniem obraztsov iz konstrukcionnoi uglerodistoi stali i podvergnutykh ustalostnym ispytaniyam // Defectoskopiya. 2024. No. 7. P. 62—66.
  7. Kochnev A.V, Rigmant M.B., Korkh M.K., Gordeev N.V., Matosyan A.M. Monitoring izmeneniya otnositel`noi magnitnoi pronitsaemosti pri tsiklicheskikh ispytaniyakh na izgib obraztsov iz austenitnoi khromonikelevoi stali 10Kh18N10T // Defectoskopiya. 2024. No. 9. P. 52—56.

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