Monastyrsky Gennady
Monastyrsky Gennady
Підтверджена електронна адреса в kpi.ua
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Powder metallurgical processing of Ni–Ti–Zr alloys undergoing martensitic transformation: Part I
GE Monastyrsky, V Odnosum, J Van Humbeeck, VI Kolomytsev, YN Koval
Intermetallics 10 (1), 95-103, 2002
422002
Spark plasma sintering of Cu–Al–Ni shape memory alloy
RA Portier, P Ochin, A Pasko, GE Monastyrsky, AV Gilchuk, VI Kolomytsev, ...
Journal of Alloys and Compounds 577, S472-S477, 2013
312013
Characterization of spark-eroded shape memory alloy powders obtained in cryogenic liquids
GE Monastyrsky, PA Yakovenko, VI Kolomytsev, YN Koval, AA Shcherba, ...
Materials Science and Engineering: A 481, 643-646, 2008
222008
Nanoparticles formation mechanisms through the spark erosion of alloys in cryogenic liquids
G Monastyrsky
Nanoscale research letters 10 (1), 1-8, 2015
182015
Powder metallurgical processing of Ni–Ti–Zr alloys undergoing martensitic transformation—Part II
GE Monastyrsky, J Van Humbeeck, VI Kolomytsev, NK Yu
Intermetallics 10 (6), 613-624, 2002
182002
Martensitic transformation in spark plasma sintered compacts of Ni-Mn-Ga powders prepared by spark erosion method in cryogenic liquids
P Ochin, AV Gilchuk, GE Monastyrsky, Y Koval, AA Shcherba, ...
Materials Science Forum 738, 451-455, 2013
172013
Martensitic transformation and shape memory effect at very high temperatures in HfPd, and TiAu intermetallic compounds
P Vermaut, C Declairieux, P Ochin, V Kolomytsev, A Pasko, ...
Journal of Alloys and Compounds 577, S388-S392, 2013
122013
Reversible martensite transformation and shape memory effect in Fe-Ni-Nb alloys
YN Koval, GE Monastyrsky
Scripta metallurgica et materialia 28 (1), 41-46, 1993
111993
The Role of Nano-sized Fraction on Spark Plasma Sintering the Pre-Alloyed Spark-Erosion Powders
GE Monastyrsky, P Ochin, AV Gilchuk, VI Kolomytsev, YN Koval
Видавництво СумДУ, 2012
62012
Magnetic Interatomic Interactions and Atomic Ordering in Non-stoichiometric Ll2-Type Ni-Al Alloys
VA Tatarenko, VV Odnosum, M Koval'Yu, GY Monastyrs' ky
Металлофизика и новейшие технологии 25 (9), 1111-1132+ III, 2003
52003
Microstructure Investigation of the Spark Plasma Sintered Cu—Al—Ni Shape Memory Material
GE Monastyrsky, AV Kotko, AV Gilchuk, P Ochin, VI Kolomytsev, YN Koval
Металлофизика и новейшие технологии, 2014
42014
Effect of particle size on the chemical composition of Ti–Ni-base spark erosion powder obtained in liquid argon
G Monastyrsky, P Ochin, GY Wang, V Kolomytsev, Y Koval, A Gilchuk, ...
Chemistry of metals and alloys, 188-199, 2011
42011
Structure and composition of titanium spark erosion powder obtained in liquid nitrogen
G Monastyrsky, P Ochin, GY Wang, V Kolomytsev, Y Koval, V Tinkov, ...
Chemistry of metals and alloys, 126-142, 2011
42011
Martensitic transformation in Ni-Al-Pt high temperature shape memory alloys
GE Monastyrsky, P Ochin, VV Odnosum, AY Pasko, VI Kolomytsev, ...
Materials Science Forum 738, 506-511, 2013
32013
Study of the martensitic transformation in the Hafnium-Palladium system
C Declairieux, P Vermaut, R Portier, P Ochin, V Kolomytsev, A Pasko, ...
European Symposium on Martensitic Transformations, 04005, 2009
32009
The microstructure and martensitic transformation in Ni-Al alloys with yttrium addition
T Czeppe, YN Koval, GE Monastyrsky
Le Journal de Physique IV 7 (C5), C5-173-C5-178, 1997
31997
On the nature of the variation of martensitic transformation hysteresis and SME characteristics in Fe-Ni-base alloys
YN Koval, GE Monastyrsky
Le Journal de Physique IV 5 (C8), C8-397-C8-402, 1995
31995
Effect of additions of Re in NiAl based alloys
YN Koval, GE Monastyrsky, VV Odnosum, GS Firstov, J Van Humbeeck
Journal de Physique IV (Proceedings) 112, 1063-1066, 2003
22003
Martensitic transformation and shape memory effect in Ni-Al based alloys
S Ponomarova, V Odnosum, I Koval, G Monastyrsky, V Kolomytsev, ...
MATEC Web of Conferences 33, 06004, 2015
12015
Mechanical testing of the shape-memory materials synthesized by a plasma-spark method
GE Monastyrsky, AV Gilchuk, P Ochin, OM Ivanova, YN Podrezov, ...
Металлофизика и новейшие технологии, 1547-1559, 2014
12014
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