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Mikhail Krivilev
Mikhail Krivilev
Udmurt State University
Email verificata su udsu.ru
Titolo
Citata da
Citata da
Anno
Управление лазерным спеканием металлических порошковых смесей
МД Кривилев, ЕВ Харанжевский, ГА Гордеев, ВЕ Анкудинов
Управление большими системами: сборник трудов, 299-322, 2010
542010
Dendritic growth in Al–Si alloys during brazing. Part 1: Experimental evidence and kinetics
DP Sekulic, PK Galenko, MD Krivilyov, L Walker, F Gao
International journal of heat and mass transfer 48 (12), 2372-2384, 2005
542005
Phase-field model of interface migration and powder consolidation in additive manufacturing of metals
MD Krivilyov, SD Mesarovic, DP Sekulic
Journal of Materials Science 52, 4155-4163, 2017
382017
Ultralow friction behaviour of B4C-BN-MeO composite ceramic coatings deposited on steel
EV Kharanzhevskiy, AG Ipatov, MD Krivilyov, AV Makarov, ...
Surface and Coatings Technology 390, 125664, 2020
332020
Dendritic growth in Al–Si alloys during brazing. Part 2: Computational modeling
DP Sekulic, PK Galenko, MD Krivilyov, L Walker, F Gao
International journal of heat and mass transfer 48 (12), 2385-2396, 2005
332005
Tribological performance of boron-based superhard coatings sliding against different materials
EV Kharanzhevskiy, AG Ipatov, AV Makarov, FZ Gil'mutdinov, ...
Wear 477, 203835, 2021
302021
Kinetics of the molten Al–Si triple line movement during a brazed joint formation
H Fu, M Dehsara, M Krivilyov, SD Mesarovic, DP Sekulic
Journal of materials science 51, 1798-1812, 2016
292016
Effect of oxygen in surface layers formed during sliding wear of Ni–ZrO2 coatings
EV Kharanzhevskiy, AG Ipatov, AV Makarov, FZ Gil'mutdinov, ...
Surface and Coatings Technology 434, 128174, 2022
252022
Multiscale analysis of the effect of competitive nucleation on phase selection in rapid solidification of rare-earth ternary magnetic materials
M Krivilyov, T Volkmann, J Gao, J Fransaer
Acta materialia 60 (1), 112-122, 2012
242012
Laser sintering of Fe-Ni nanocomposites
EV Kharanzhevskiy, MD Krivilyov
The physics of metals and metallography 111, 53-61, 2011
242011
Structure and mechanical properties of structural steel in laser resolidification processing
EV Haranzhevskiy, DA Danilov, MD Krivilyov, PK Galenko
Materials Science and Engineering: A 375, 502-506, 2004
242004
Atomic density functional and diagram of structures in the phase field crystal model
VE Ankudinov, PK Galenko, NV Kropotin, MD Krivilyov
Journal of Experimental and Theoretical Physics 122, 298-309, 2016
232016
Modeling of a transition to diffusionless dendritic growth in rapid solidification of a binary alloy
PK Galenko, MD Krivilyov
Computational materials science 45 (4), 972-980, 2009
232009
Synthesis of composite coatings using rapid laser sintering of metallic powder mixtures
MD Krivilyov, EV Kharanzhevskii, VG Lebedev, DA Danilov, EV Danilova, ...
The Physics of Metals and Metallography 114, 799-820, 2013
212013
Modelling of crystal pattern formation in isothermal undercooled alloys
PK Galenko, MD Krivilyov
Modelling and Simulation in Materials Science and Engineering 8 (1), 81, 2000
212000
Model for isothermal pattern formation of growing crystals in undercooled binary alloys
PK Galenko, MD Krivilyov
Modelling and Simulation in Materials Science and Engineering 8 (1), 67, 2000
202000
Bifurcations in a sidebranch surface of a free-growing dendrite
PK Galenko, MD Krivilyov, SV Buzilov
Physical Review E 55 (1), 611, 1997
201997
Determination of characteristics of laser radiation interaction with nanocomposite powder materials
SN Kostenkov, EV Kharanzhevskii, MD Krivilev
The Physics of Metals and Metallography 113, 93-97, 2012
182012
Numerical simulation of heat transfer and melting of Fe-based powders in SLM processing
V Ankudinov, GA Gordeev, MD Krivilyov
IOP Conference Series: Materials Science and Engineering 192 (1), 012026, 2017
152017
Optimisation of processing parameters in laser sintering of metallic powders
GA Gordeev, VE Ankudinov, MD Krivilyov, EV Kharanzhevskiy
IOP Conference Series: Materials Science and Engineering 27 (1), 012079, 2012
152012
Il sistema al momento non può eseguire l'operazione. Riprova più tardi.
Articoli 1–20