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Surface modification of Ti alloy by electro-explosive alloying and electron-beam treatment
By methods of modern physical metallurgy the analysis of structure phase states of titanium alloy VT6 is carried out after electric explosion alloying with boron carbide and subsequent irradiation by pulsed electron beam. The formation of an electro-explosive alloying zone of a thickness up to 50 µm, having a gradient structure, characterized by decrease in the concentration of carbon and boron with increasing distance to the treatable surface has been revealed. Subsequent electron-beam treatment of alloying zone leads to smoothing of the alloying area surface and is accompanied by the multilayer structure formation at the depth of 30 µm with alternating layers with different alloying degrees having the structure of submicro - and nanoscale level.
Surface modification of Ti alloy by electro-explosive alloying and electron-beam treatment
By methods of modern physical metallurgy the analysis of structure phase states of titanium alloy VT6 is carried out after electric explosion alloying with boron carbide and subsequent irradiation by pulsed electron beam. The formation of an electro-explosive alloying zone of a thickness up to 50 µm, having a gradient structure, characterized by decrease in the concentration of carbon and boron with increasing distance to the treatable surface has been revealed. Subsequent electron-beam treatment of alloying zone leads to smoothing of the alloying area surface and is accompanied by the multilayer structure formation at the depth of 30 µm with alternating layers with different alloying degrees having the structure of submicro - and nanoscale level.
Surface modification of Ti alloy by electro-explosive alloying and electron-beam treatment
Gromov, Victor (author) / Kobzareva, Tatiana (author) / Ivanov, Yuryi (author) / Budovskikh, Evgeniy (author) / Baschenko, Lyudmila (author) / Starenchenko, Svetlana V. (editor) / Solov’eva, Yulia V. (editor) / Kopanitsa, Natalya O. (editor)
ADVANCED MATERIALS IN TECHNOLOGY AND CONSTRUCTION (AMTC-2015): Proceedings of the II All-Russian Scientific Conference of Young Scientists “Advanced Materials in Technology and Construction” ; 2015 ; Tomsk, Russia
AIP Conference Proceedings ; 1698
2016-01-15
4 pages
Conference paper
Electronic Resource
English
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