Zobrazeno 1 - 10
of 31
pro vyhledávání: '"B. M. Efros"'
Publikováno v:
Bulletin of the Russian Academy of Sciences: Physics. 73:1193-1198
It is shown experimentally that the formation of submicrocrystalline and nanocrystalline states significantly affects the stability of the high pressure hcp phase in iron-based alloys. It is established that the manganese segregation from the bulk of
Autor:
A. M. Patselov, S. V. Gladkovskii, Viktor Varyukhin, V. P. Pilyugin, B. M. Efros, L. V. Loladze, N. B. Efros
Publikováno v:
Materials Science and Engineering: A. 503:114-117
Microstructures of Fe–Cr–Ni and Fe–Mn alloys subjected to severe plastic deformation (SPD) under pressure have been studied by different methods. It is shown that in an austenitic steel (γ: face centred cubic structure, γ-Fe–18%Cr–10%Ni)
Autor:
B. M. Efros, V. V. Sagaradze, A. I. Deryagin, A. R. Kuznetsov, V. A. Zavalishin, N. F. Vil’danova, V. A. Ivchenko
Publikováno v:
The Physics of Metals and Metallography. 106:291-301
Deformation-induced redistribution of components in a steel Kh11N30 was shown to decrease up to zero as the deformation temperature increases from 0 to 300°C. The maximum Curie temperature of deformation-induced ferromagnetic clusters formed in stee
Publikováno v:
Materials Science Forum. :102-107
Microstructures of Fe-Cr-Ni and Fe-Mn alloys subjected to severe plastic deformation under pressure have been studied by high pressure torsion and twist extrusion. This processes have similar deformation schemes, but very different pressure levels. T
Publikováno v:
Russian Physics Journal. 50:1165-1169
In the present work, the structurization processes determining the level of mechanical properties are investigated on the example of the VT22 (α + β) high-strength titanium alloy. The influence of regimes of plastic deformation under pressure on th
Publikováno v:
Russian Journal of Nondestructive Testing. 43:427-435
The effect of severe plastic deformation on the destabilization of the g phase in metastable and stable austenitic steels is considered. An increase in the degree of deformation and a decrease in the deformation temperature were shown to lead to the
Publikováno v:
Materials Science Forum. :551-556
The analysis is made of effect and physical mechanisms of the influence of pressure on metal materials that are in the state of plastic flow, as well as on characteristics of materials undergone severe plastic deformation under pressure.
Publikováno v:
Materials Science Forum. :995-1000
It has been revealed that in Iridium influenced be severe plastic deformation (SPD) a ultrafine grained (UFG) structure is formed (the grain size of 20-30 nm), but in the bodies of grains there are practically no defects of structure, however, after
Publikováno v:
Defect and Diffusion Forum. :233-236
Publikováno v:
Metallurgist. 44:485-488