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High Temperature Material Processes: An International Quarterly of High-Technology Plasma Processes
SJR: 0.137 SNIP: 0.341 CiteScore™: 0.43

ISSN Druckformat: 1093-3611
ISSN Online: 1940-4360

High Temperature Material Processes: An International Quarterly of High-Technology Plasma Processes

DOI: 10.1615/HighTempMatProc.2015015827
pages 85-91

MODIFICATION OF HYPEREUTECTIC SILUMIN SURFACE LAYER BY A HIGH-INTENSITY PULSE ELECTRON BEAM

Yurii F. Ivanov
Institute of High Current Electronics, Siberian Branch of the Russian Academy of Sciences (IHCE SB RAS), Tomsk, Russia; National Research Tomsk Polytechnic University, Tomsk, Russia
A. P. Laskovnev
Presidium of the National Academy of Sciences of Belarus, Minsk, Belarus
A. D. Teresov
Institute of High-Current Electronics, Siberian Branch of the Russian Academy of Sciences, 2/3 Akademicheskiy Ave., Tomsk, 634055, Russia; National Research Tomsk State University, 36 Lenin Ave., Tomsk, 634050, Russia
Nikolai N. Cherenda
Belarusian State University, 4 Nezavisimost Ave., Minsk, 220030, Belarus; South-Urals State University, 76 Lenin Ave., Chelyabinsk, 454080, Russia
Vladimir V. Uglov
Belarusian State University, 4 Nezavisimost Ave., Minsk, 220030, Belarus; National Research Tomsk Polytechnic University, 2a Lenin Ave., Tomsk, 634028, Russia
E. A. Petrikova
Institute of High Current Electronics, Siberian Branch of the Russian Academy of Sciences (IHCE SB RAS), Tomsk, Russia
M. V. Astashynskaya
Research Laboratory, Department of Solid State Physics, Belarusian State University, 4 Nezavisimost Ave., Minsk, 220030, Belarus
Nikolay N. Koval
Institute of High Current Electronics, Siberian Branch of the Russian Academy of Sciences, 2/3 Akademichesky Ave., Tomsk, 634055, Russia; National Research Tomsk State University, 36 Lenin Ave., Tomsk, 634050, Russia

ABSTRAKT

The results of an analysis of the elemental and phase composition, defect substructure, strength and tribological characteristics of hypereutectic silumin before and after irradiation by a highintensity pulse electron beam are presented. The formation of a modified surface layer with the thickness of up to 1000 μm after irradiation has been revealed. The modified layer has enhanced strength and tribological characteristics.


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