Mark Kalashnikov
Tomsk Polytechnic University
51 Papers
69 Citations
Mark Kalashnikov is an academic researcher from Tomsk Polytechnic University. The author has contributed to research in topics: Surface layer & Titanium. The author has an hindex of 4, co-authored 51 publications. Previous affiliations of Mark Kalashnikov include Institute of Strength Physics and Materials Science SB RAS & Tomsk State University.
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Papers
Ceramic composite based on zirconia reinforced by single-walled carbon nanotubes
A. A. Leonov,Edgar Dvilis,Oleg L. Khasanov,V. D. Paygin,Mark Kalashnikov,M. S. Petukevich,Alexandra A. Panina +6 more
TL;DR: In this paper, the effect of the relative content of single-walled carbon nanotubes (SWCNTs) on the compaction, phase composition, microstructure, and mechanical properties of composites based on yttria-stabilized zirconia obtained via spark plasma sintering is studied.
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Synthesis of W-Cu composite nanoparticles by the electrical explosion of two wires and their consolidation by spark plasma sintering
Alexander Pervikov,Aleksandr S. Lozhkomoev,Edgar Dvilis,Mark Kalashnikov,Mark Kalashnikov,V. D. Paygin,Oleg L. Khasanov,Marat Lerner +7 more
- 05 Feb 2020
TL;DR: In this paper, the possibility of obtaining composite W-Cu nanoparticles with the core-shell structure and high content of copper by means of electrical explosion of intertwined W and Cu wires was shown.
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Influence of the aluminum ion implantation dose on the phase composition of submicrocrystalline titanium
TL;DR: In this article, the influence of ion implantation and the irradiation dose on the elemental and phase composition of the surface layers of VT1-0 alloy has been investigated, and it has been found that the grain longitudinal size decreases 5 times at the dose rate of 1·1017 ion/cm2.
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Structural and phase transformations in 0.3C-1Cr-1Mn-1Si-Fe steel after electrolytic plasma treatment
Eduard Kozlov,Natalya Popova,Lyaila Zhurerova,Elena Nikonenko,Mark Kalashnikov,Mazhin Skakov +5 more
- 10 Nov 2016
TL;DR: In this paper, transmission electron microscopy (TEM) investigations on thin foils concerning phase transitions occurred in the type 0.3C-1Cr-1Mn-1Si-Fe alloyed steel after the electrolyte plasma treatment, i.e. carbonitriding at 850°C during 5 min.
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Structure and Properties of the Surface Layer of B4C Ceramic Treated with an Intense Electron Beam
Yu. F. Ivanov,Yu. F. Ivanov,Oleg L. Khasanov,M. S. Petyukevich,G. V. Smirnov,V. V. Polisadova,Z. G. Bikbaeva,A. D. Teresov,Mark Kalashnikov,O. S. Tolkachov +9 more
TL;DR: In this paper, a pulsed intense electron beam irradiation of a sintered boron carbide ceramic is shown to lead to the formation of a modified surface layer with a nonporous polycrystalline structure.
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