Просмотр коллекции по группе - По тематике SOLIDIFICATION

Перейти к: 0-9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
А Б В Г Д Е Ж З И Й К Л М Н О П Р С Т У Ф Х Ц Ч Ш Щ Ъ Ы Ь Э Ю Я
или введите несколько первых букв:  
Отображение результатов 6 до 25 из 32 < назад   дальше >
Дата публикацииНазваниеАвторы
2021Effects of Local Nonequilibrium in Rapid Eutectic Solidification—Part 2: Analysis of Effects and Comparison to ExperimentXu, J.; Rettenmayr, M.; Galenko, P. K.
2020Evaluation of Microstructure and Hardness of Novel Al-Fe-Ni Alloys with High Thermal Stability for Laser Additive ManufacturingLoginova, I. S.; Sazerat, M. V.; Loginov, P. A.; Pozdniakov, A. V.; Popov, N. A.; Solonin, A. N.
2012Flow-induced morphological instability and solidification with the slurry and mushy layers in the presence of convectionAlexandrov, D. V.; Malygin, A. P.
2020Growth of different faces in a body centered cubic lattice: A case of the phase-field-crystal modelingAnkudinov, V.; Galenko, P. K.
2023The impact of convection on morphological instability of a planar crystallization frontMakoveeva, E. V.; Alexandrov, D. V.; Galenko, P. K.
2021Influence of Adding Modifying Elements and Homogenization Annealing on Laser Melting Process of the Modified Alznmgcu with 4%si AlloysMosleh, A. O.; Khalil, A. M.; Loginova, I. S.; Solonin, A. N.
2019Influence of melt preparing technology on the structure of cast aluminum-silicon alloyTyagunov, G.; Kostina, T.; Baryshev, E.; Vandysheva, I.; Shmakova, K.
2019Kinetics of rapid crystal growth: Phase field theory versus atomistic simulationsGalenko, P. K.; Salhoumi, A.; Ankudinov, V.
2022Kinetics of rapid growth and melting of Al50Ni50 alloying crystals: phase field theory versus atomistic simulations revisited *Rozas, R. E.; Ankudinov, V.; Galenko, P. K.
2020Liquid metal flow under traveling magnetic field-solidification simulation and pulsating flow analysisShvydkiy, E.; Baake, E.; Köppen, D.
2013Mathematical modeling of solidification process near the inner core boundary of the EarthAlexandrov, D. V.; Malygin, A. P.
2017Modeling of convection, temperature distribution and dendritic growth in glass-fluxed nickel meltsGao, J.; Kao, A.; Bojarevics, V.; Pericleous, K.; Galenko, P. K.; Alexandrov, D. V.
2020Modeling of dendrite growth from undercooled nickel melt: Sharp interface model versus enthalpy methodKao, A.; Toropova, L. V.; Alexandrov, D. V.; Demange, G.; Galenko, P. K.
2012Numerical modeling of one-dimensional binary solidification with a mushy layer evolutionLee, Daniel; Alexandrov, Dmitri; Huang, H. N.
2021On the Theory of Directional Solidification in the Presence of a Mushy ZoneAlexandrov, D. V.; Nizovtseva, I. G.; Alexandrova, I. V.; Ivanov, A. A.; Starodumov, I. O.; Toropova, L. V.; Gusakova, O. V.; Shepelevich, V. G.
2020Phase selection and microstructure of slowly solidified Al-Cu-Fe alloysKamaeva, L. V.; Sterkhova, I. V.; Lad'yanov, V. I.; Ryltsev, R. E.; Chtchelkatchev, N. M.
2013Phenomenological model of nonequilibrium solidificationMartyushev, L. M.; Soboleva, A. S.
2013Production of heat-resistant EP220 and EP929 alloys by high-temperature treatment of meltTyagunov, A. G.; Baryshev, E. E.; Tyagunov, G. V.; Mikhailov, V. B.
2010Selection criterion for the growing dendritic tip in a non-isothermal binary system under forced convective flowAlexandrov, D. V.; Galenko, P. K.; Herlach, D. M.
2013Simulation of the solidification of the melt in the Vanyukov furnace in the case of emergency stoppageLisienko, V. G.; Malikov, G. K.; Morozov, M. V.; Belyaev, V. V.; Kirsanov, V. A.