Александр Ремович Смирнов, A.R. Smirnov, А.Р. Смирнов, Alexander Smirnov
Александр Ремович Смирнов, A.R. Smirnov, А.Р. Смирнов, Alexander Smirnov
B.Verkin Institute for Low Temperature Physics and Engineering of the NAS of Ukraine
Подтвержден адрес электронной почты в домене ilt.kharkov.ua
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Процитировано
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Год
Temperature effect on formation of reorientation bands in α-Ti
VA Moskalenko, AR Smirnov
Materials Science and Engineering: A 246 (1-2), 282-288, 1998
501998
Nanocrystalline Titanium Produced by a Cryomechanical Method: Microstructure and Mechanical Properties
VA Moskalenko, AR Smirnov, AV Moskalenko
Fiz. Nizk. Temp 35 (11), 1160-1164, 2009
432009
Cryomechanically obtained nanocrystalline titanium: microstructure and mechanical properties
VA Moskalenko, AR Smirnov, AV Moskalenko
Low Temperature Physics 35 (11), 905-907, 2009
362009
Нанокристаллический титан, полученный криомеханическим методом: микроструктура и механические свойства
ВА Москаленко, АР Смирнов
Физика низких температур, 2009
242009
Mechanical properties and structural features of nanocrystalline titanium produced by cryorolling
VA Moskalenko, VI Betekhtin, BK Kardashev, AG Kadomtsev, AR Smirnov, ...
Physics of the Solid State 56 (8), 1590-1596, 2014
222014
Correlation between substructure and mechanical properties of α-Ti at varying deformation temperatures 4.2–373 K
AR Smirnov, VA Moskalenko
Materials Science and Engineering: A 327 (2), 138-143, 2002
202002
Low-temperature plastic deformation and strain-hardening of nanocrystalline titanium
VA Moskalenko, AR Smirnov, RV Smolyanets
Low temperature physics 40 (9), 837-845, 2014
182014
LTP 28, 1310 (2002) VA Moskalenko, AR Smirnov, VN Kovaleva, and VD Natsik
VA Moskalenko
Low Temp. Phys 28, 935, 2002
162002
Механические свойства и структурные особенности нанокристаллического титана, полученного при криопрокатке
ВА Москаленко, ВИ Бетехтин, БК Кардашев, АГ Кадомцев, ...
Физика твердого тела 56 (8), 1539-1545, 2014
152014
Staged work hardening of polycrystalline titanium at low temperatures and its relation to substructure evolution
VA Moskalenko, AR Smirnov, VN Kovaleva, VD Natsik
Low Temperature Physics 28 (12), 935-941, 2002
152002
Micromechanical properties of VT1-0 titanium cryorolled to various degrees of strain
AV Rusakova, SV Lubenets, LS Fomenko, VA Moskalenko, AR Smirnov
Low Temperature Physics 41 (8), 649-658, 2015
132015
Investigation of titanium nanostructure produced by deformation at low temperature
IS Braude, NN Gal'tsov, VA Moskalenko, AP Smirnov
Fizika Nizkikh Temperatur 37 (12), 1307-1314, 2011
132011
Stability of the dislocation substructure of α-titanium against deformation temperature variation in the range 4.2–293 K
AR Smirnov, VA Moskalenko
Acta metallurgica et materialia 42 (8), 2603-2607, 1994
131994
Fundamentals of titanium nanocrystalline structure creation by cryomechanical grain fragmentation
VA Moskalenko, AR Smirnov, YM Plotnikova, IS Braude, RV Smolianets
Materials Science and Engineering: A 700, 707-713, 2017
122017
Investigation of titanium nanostructure deformed at low temperatures
IS Braude, NN Gal’tsov, VA Moskalenko, AR Smirnov
Low Temperature Physics 37 (12), 1042-1047, 2011
102011
Исследование наноструктуры титана, деформированного при низких температурах
ИС Брауде, НН Гальцов, ВА Москаленко, АР Смирнов
Физика низких температур, 2011
102011
ФНТ 35, 1160
ВА Москаленко, АР Смирнов, АВ Москаленко
72009
Dislocation structure and fatigue crack growth in titanium alloy VT5-1ct at temperatures of 293-11 K
NM Grinberg, AR Smirnov, VA Moskalenko, EN Aleksenko, LF Yakovenko, ...
Materials Science and Engineering: A 165 (2), 125-131, 1993
51993
Dislocation substructure and mechanical properties of titanium deformed at different rates(Dislokatsionnaia substruktura i mekhanicheskie svoistva titana, deformirovannogo s …
AR Smirnov, VA Moskalenko
Fizika Metallov i Metallovedenie 66, 799-807, 1988
51988
Relationship between work-hardening rate and dislocation structure in titanium alloys at 4.2 to 373 K
VA Moskalenko, VN Kovaleva, AR Smirnov, VI Startsev
Advances in Cryogenic Engineering Materials, 102-106, 1980
51980
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