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Formation of surface gradient structural-phase states under electron-beam treatment of stainless steel

Gromov, V. E. et al.

Journal of surface investigation : x-ray, synchrotron and neutron techniques VOL 5; NUMBER 5, ; 2011, 974-978 -- SPRINGER SCIENCE + BUSINESS MEDIA -- 2011

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Gradient structural phase states formed in steel 08Kh18N10T in the course of high-cycle fatigue to failure

Ivanov, Y. F. et al.

Physics of metals and metallography. VOL 112; NUMBER 1, ; 2011, 81-89 -- Springer Science + Business Media -- 2011

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Fatigue failure of stainless steel after electron-beam treatment

Sizov, V. V. et al.

Steel in translation. VOL 42; NUMBER 6, ; 2012, 486-488 -- Springer Science + Business Media Part 6; (pages 486-488) -- 2012

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Structure-Phase States and Fracture Surface in Fatigue Loaded and Failed Austenitic Stainless Steel

Vorobyov, S. V. et al.

The Arabian journal for science and engineering. VOL 31; NUMB 2; C, ; 2006, 39-48 -- KING FAHD UNIVERSITY OF PETROLEUM & MINERALS (pages 39-48) -- 2006

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Increase in the fatigue durability of stainless steel by electron-beam surface treatment

Gromov, V. E. et al.

Journal of surface investigation : x-ray, synchrotron and neutron techniques VOL 7; NUMBER 1, ; 2013, 94-98 -- SPRINGER SCIENCE + BUSINESS MEDIA Part 1; (pages 94-98) -- 2013

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Change of dislocation substructures upon high-cycle fatigue of stainless steel

Gromova, A. V. et al.

RUSSIAN PHYSICS JOURNAL. VOL 52; NUMBER 3, ; 2009, 265-268 -- Springer Science + Business Media Part 3; (pages 265-268) -- 2009

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Evolution of the dislocational substructures in 08Kh18N10T steel in multicyclic fatigue

Vorob ev, S. V. et al.

Steel in translation. VOL 35; NUMB 4, ; 2005, 62-64 -- ALLERTON PRESS, INC. (pages 62-64) -- 2005

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Formation of stress field gradients during the high cycle fatigue of an austenitic corrosion-resistant steel

Kovalenko, V. V. et al.

Russian metallurgy. Metally. VOL 2010; NUMBER 4, ; 2010, 268-272 -- Springer Science + Business Media (pages 268-272) -- 2010

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Formation of gradients of structure, phase composition, and dislocation substructure in differentially hardened rails

Gromov, V. E. et al.

Nanotechnologies in Russia VOL 9; NUMBER 5-6, ; 2014, 288-292 -- SPRINGER SCIENCE + BUSINESS MEDIA Part 5-6; (pages 288-292) -- 2014

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Evolution of the phase composition and defect substructure in the surface layer of rail steel under fatigue

Grishunin, V. A. et al.

Steel in translation. VOL 43; NUMBER 11, ; 2013, 724-727 -- Springer Science + Business Media Part 11; (pages 724-727) -- 2013

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by this Author/Contributor:

  1. Konovalov, S. V.
  2. Ivanov, Y. F.
  3. Gromov, V. E.
  4. Kormyshev, V. E.
  5. Gromova, A. V.

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