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Nature of localization of plastic flow of titanium alloy 19 under the conditions of active deformation at 4.2 K

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Journal of Engineering Physics and Thermophysics Aims and scope

Consideration is given to a multilevel structural approach to the occurrence of local instability zones under the conditions of active deformation of a superconducting titanium alloy (Tc = 5.4 K). It is noted that the dislocation nanostructural level responsible for the energy activation in dislocation cores and determining the athermic and thermoactive deforming-stress and electrical-resistance jumps is a connecting link between all structural levels.

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References

  1. G. A. Malygin, Influence of the superconducting state on the thermal instability of the plastic deformation of crystals at low temperatures, Fiz. Tverd. Tela, 40, No. 10, 1778–1784 (1998).

    Google Scholar 

  2. V. V. Pustovalov, Influence of the superconducting transition on the low-temperature jumpwise deformation of metals and alloys, Fiz. Nizk. Temp., 26, No. 6, 515–535 (2000).

    Google Scholar 

  3. V. E. Panin (Ed.), Physical Mezomechanics and Computer Construction of Materials [in Russian], in 2 vols., Vols. 1, 2, Nauka, Novosibirsk (1995).

  4. M. E. Bosin, F. F. Lavrent’ev, and V. N. Nikiforenko, On localization of plastic deformation in zinc crystals with the dislocation tree, Fiz. Tverd. Tela, 38, No. 12, 3619–3623 (1996).

    Google Scholar 

  5. V. E. Panin, V. E. Egorushkin, A. V. Panin, and D. D. Moiseenko, Nature of the localization of the plastic deformation of solids, Zh. Tekh. Fiz., 77, No. 8, 62–68 (2007).

    Google Scholar 

  6. V. N. Nikiforenko and F. F. Lavrent’ev, Basic features that determine the change in the microcontact spectra and are caused by dislocations, Dokl. Ross. Akad. Nauk, 373, No. 2, 178–180 (2000).

    Google Scholar 

  7. V. V. Shpeizman, V. I. Nikolaev, B. I. Smirnov, A. B. Lebedev, and V. I. Kopylov, Low-temperature deformation of nanocrystalline niobium, Fiz. Tverd. Tela, 42, No. 6, 1034–1037 (2000).

    Google Scholar 

  8. V. V. Shpeizman, V. I. Nikolaev, N. N. Peschanskaya, B. I. Smirnov, I. A. Aleksandrov, N. A. Enikeev, V. U. Kalykhanov, and A. A. Nazarov, Laws governing the low-temperature plasticity of nanocrystalline titanium and copper, Fiz. Tverd. Tela, 79, No. 4, 644–649 (2007).

    Google Scholar 

  9. V. I. Nikolaev, V. V. Shpeizman, and M. V. Sukhanova, Local heating during deformation in the region of helium temperatures and its measurement with the aid of strain gauges, Fiz. Tverd. Tela, 50, No. 3, 417–420 (2008).

    Google Scholar 

  10. V. I. Al’shits and V. L. Indenbom, Dynamic retardation of dislocations, in: Dynamics of Dislocations [in Russian], Naukova Dumka, Kiev (1975), pp. 232–275.

    Google Scholar 

  11. V. N. Nikiforenko and M. E. Bosin, On the problem of experimental detection of the Planck wavelength in a solid body, in: Proc. 11th Int. Conf. "St. Petersburg Readings on the Problems of the Strength and Growth of Crystals" [in Russian], Vol. 2, St. Petersburg (2008), pp. 204–205.

  12. V. N. Nikiforenko, I. S. Braude, O. P. Salita, and V. G. Khomenko, Change in the structural state of titanium in electrical heating in liquid nitrogen, Inzh.-Fiz. Zh., 66, No. 2, 93–96 (1994).

    Google Scholar 

  13. V. N. Nikiforenko, F. F. Lavrent’ev, I. S. Braude, and O. P. Salita, Electrothermal action on the ABM-1 alloy in the medium of liquid nitrogen, Probl. Prochn., No. 2, 90–92 (1996).

    Google Scholar 

  14. V. N. Nikiforenko, F. F. Lavrent’ev, I. S. Braude, and O. P. Salita, Formation of the structural state in certain structural materials as a result of electric-current processing at 77 K, Dokl. Ross. Akad. Nauk, 349, No. 4, 472–474 (1996).

    Google Scholar 

  15. A. M. Kosevich and A. S. Kovalev, Introduction to Nonlinear Physical Mechanics [in Russian], Naukova Dumka, Kiev (1989).

    MATH  Google Scholar 

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Translated from Inzhenerno-Fizicheskii Zhurnal, Vol. 82, No. 6, pp. 1194–1198, November–December, 2009.

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Nikiforenko, V.N., Bosin, M.E. Nature of localization of plastic flow of titanium alloy 19 under the conditions of active deformation at 4.2 K. J Eng Phys Thermophy 82, 1219–1223 (2009). https://doi.org/10.1007/s10891-010-0294-6

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  • DOI: https://doi.org/10.1007/s10891-010-0294-6

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