Nonequilibrium structural states in nickel after large plastic deformation

I.A. Ditenberg, E.A. Korznikova, A.N. Tyumentsev, D. Setman, M. Kerber show affiliations and emails
Received  26 May 2014; Accepted  29 July 2014
Citation: I.A. Ditenberg, E.A. Korznikova, A.N. Tyumentsev, D. Setman, M. Kerber. Nonequilibrium structural states in nickel after large plastic deformation. Lett. Mater., 2014, 4(2) 100-103
BibTex   https://doi.org/10.22226/2410-3535-2014-2-100-103

Abstract

Using the methods of structural characterization and measuring the parameters of thermophysical properties, we have studied the features of highly nonequilibrium structural states that form in pure nickel in the course of high pressure torsion in Bridgman’s anvils

References (19)

1. R.Z. Valiev, R. S. Musalinov. The Physics of Metals andMetallography. 78 (6), 114 (1994).
2. Z. Horita, D.J. Smith, M. Furukawa, M. Nemoto, R.Z.Valiev, T.G. Langdon. Mat. Sci. Forum. A204-206, 437(1996).
3. Yu.A. Babanov, L.A. Blaginina, I.V. Golovshchikova, T. Haubold, F. Boscherini, S. Mobilio. The Physics ofMetals and Metallography. 83(4), 444 (1997).
4. A.N. Tyumentsev, Yu.P. Pinzhin, A.D. Korotaev, M. V. Tret’yak, R.K. Islamgaliev, R.Z. Valiev. The Physicsof Metals and Metallography. 86(6), 604 (1998).
5. A.N. Tyumentsev, A.D. Korotaev, Yu.P. Pinzhin. PhysicalMesomechanics. 7(3-4), 31 (2004).
6. A.N. Tyumentsev. American Institute of Physics. 999, 268(2008).
7. I.A. Ditenberg, A.N. Tyumentsev, A.V. Korznikov, E.A. Korznikova. Physical Mesomechanics. 16(3), 239(2013).
8. A.N. Tyumentsev, I.A. Ditenberg. Russian PhysicsJournal. 54(9), 977 (2012).
9. A.N. Tyumentsev, I.A. Ditenberg, A.D. Korotaev, K.I. Denisov. Physical Mesomechanics. 16(4), 319 (2013).
10. M. Kamaya. Ultramicroscopy. 111(8), 1189 (2011).
11. E. Schafler, G. Steiner, E. Korznikova, M.B. Kerber, M.J. Zehetbauer. Mat. Sci. Eng. A. 410-411(5), 169 (2005).
12. D. Setman, E. Schafler, E. Korznikova, M.J. Zehetbauer. Mat. Sci. Eng. A 493, 116 (2008).
13. E.A. Korznikova, I.A. Ditenberg, A.N. Tyumentsev, A.V. Korznikov. Deformation and Fracture of Materials.11, 8 (2010). (in Russian).
14. E.A. Korznikova, S.Y. Mironov, A.V. Korznikov, A.P. Zhilyaev, T.G. Langdon. Mat. Sci. Eng. A. 556, 437(2012).
15. E.A. Korznikova, M. Zehetbauer. Materialovedenie 6, 39(2008). (in Russian).
16. A.N. Tyumentsev, I.A. Ditenberg. Phys. Mesomech.14(5-6), 249 (2011).
17. A.N. Tyumentsev, I.A. Ditenberg, K.I. Denisov, E.A. Korznikova, A.V. Korznikov, V.M. Chernov. RussianPhysics Journal. 53(12), 1295 (2011).
18. V.A. Starenchenko, D.N. Cherepanov, Y. V. Solov’eva, L.E. Popov. Russian Physics Journal. 52(4), 398 (2009).
19. M.J. Zehetbauer, G. Steiner, E. Schafler, A. Korznikov, E. Korznikova. Mat. Sci. Forum. 503-504, 57 (2006).

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