Zobrazeno 1 - 10
of 201
pro vyhledávání: '"A.G. Ponomarev"'
Publikováno v:
Фізика і хімія твердого тіла, Vol 24, Iss 2, Pp 249-255 (2023)
The aluminum alloys D16 and AMg6 were irradiated using the high-current relativistic electron beam in vacuum. Intense electron irradiation of the materials modified their physical properties. The fractal character of the fracture surfaces’ images w
Externí odkaz:
https://doaj.org/article/ef4c38004230435b9765e7233ef4d22b
Autor:
V.V. Bryukhovetsky, V.V. Lytvynenko, D.E. Myla, V.A. Bychko, Yu.F. Lonin, A.G. Ponomarev, V.T. Uvarov
Publikováno v:
Фізика і хімія твердого тіла, Vol 22, Iss 4, Pp 655-663 (2021)
The paper studies the distinctive features of micro-hardness value changes in the zone of industrial aluminum alloy 1933 and alloy 1380 irradiated by the relativistic electron beam. The surface layer was modified under the relativistic electron beam
Externí odkaz:
https://doaj.org/article/3c33f757b33e47fca44153425198bc0f
Publikováno v:
Problems of Atomic Science and Technology. :24-28
Irradiation of an industrial aluminum alloy AA1933 with an intense pulsed electron beam with particle energy of 0.35 MeV, a beam current of 2.0 kA, a pulse duration of 5 μs, and a beam diameter of 3 cm results in the formation of a surface layer wit
Publikováno v:
Problems of Atomic Science and Technology. :61-65
The industrial Titanium VT22 alloy was irradiated using the high-current pulsed electron beam (HCEB). HCEB method is an effective method to test the materials under extreme volumetric thermo-mechanical and irradiation conditions. The intense electron
Publikováno v:
Problems of Atomic Science and Technology. :52-55
Vector method for scanning with focused beam of megaelectronvolt-energy in proton-beam writing is described. Vector proton-beam writing method was proven experimentally to have numerous advantages over raster method. Focused beam size and shape are m
Autor:
D.E. Myla, V.V. Bryukhovetsky, V.V. Lytvynenko, S.I. Petrushenko, O.O. Nevgasimov, Yu.F. Lonin, A.G. Ponomarev, V.T. Uvarov
Publikováno v:
Problems of Atomic Science and Technology. :25-31
The processing of the AA6111-T4 aluminum alloy by the high-current relativistic electron beams affects the forming of the surface layer with a modified structure and phase state. The depth of the modified surface layer achieves 200 μm. The changes i
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms. 519:1-8
Autor:
A.G. Ponomarev, V.A. Bychko, V.V. Bryukhovetsky, Yu.F. Lonin, V.V. Lytvynenko, D.E. Myla, V.T. Uvarov
Publikováno v:
Фізика і хімія твердого тіла, Vol 22, Iss 4, Pp 655-663 (2021)
The paper studies the distinctive features of micro-hardness value changes in the zone of industrial aluminum alloy 1933 and alloy 1380 irradiated by the relativistic electron beam. The surface layer was modified under the relativistic electron beam
Publikováno v:
Problems of Atomic Science and Technology. :35-38
The pulse generators were developed to trigger the high-voltage dischargers of magnetic systems and the dischargers of the generators of pulsed voltages used by the relativistic electron beam (REB) accelerator “TEMP-B”. The description of the tri
Autor:
A.G. Ponomarev, V. T. Uvarov, A.V. Poyda, D.E. Myla, Yu. F. Lonin, V.V. Bryukhovetsky, V. P. Poyda, V.V. Lytvynenko, V.F. Klepikov
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms. 499:25-31
The structural and phase changes in the surface layer of the 1933 aluminum alloy caused by the irradiation of a high-current relativistic electron beam are studied. The impact of the electron beam leads to the formation of a remelted surface layer wi