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Дата публикацииНазваниеАвторы
2021Laves Phase Formation in High Entropy AlloysRyltsev, R.; Gaviko, V.; Estemirova, S.; Sterkhov, E.; Cherepanova, L.; Yagodin, D.; Chtchelkatchev, N.; Dubinin, N.; Uporov, S.
2019Magnetic microstructure of the Finemet-type thin filmsMikhalitsyna, E.; Soboleva, E.; Kataev, V.; Kulesh, N.; Lhderanta, E.
2021Magnetics Hysteresis Properties and Microstructure of High-Energy (Nd,Dy)–Fe–B Magnets with Low Oxygen ContentVasilenko, D. Y.; Shitov, A. V.; Bratushev, D. Y.; Podkorytov, K. I.; Gaviko, V. S.; Golovnya, O. A.; Popov, A. G.
2013Magnetodeformation of ferrogels and ferroelastomers. Effect of microstructure of the particles' spatial dispositionZubarev, A.
2021The Mechanical Properties of Chelyabinsk LL5 Chondrite Under Compression and TensionZaytsev, D.; Borodin, E. N.; Dudorov, A. E.; Panfilov, P.
2022Mechanisms of elastoplastic deformation and their effect on hardness of nanogranular Ni-Fe coatingsZubar, T. I.; Fedosyuk, V. M.; Tishkevich, D. I.; Panasyuk, M. I.; Kanafyev, O. D.; Kozlovskiy, A.; Zdorovets, M.; Michels, D.; Lyakhov, D.; Trukhanov, A. V.
2013Method for obtaining ingots of the A34 solder based on an investigation into the relation between the structure and properties of liquid and solid metalsKonstantinov, A. N.; Chikova, O. A.; Nikitin, K. V.
2021Micromagnetic modelling of stripe domains in thin films with a columnar microstructureDengina, E. Y.; Bolyachkin, A. S.; Kulesh, N. A.; Vas'Kovskiy, V. O.
2013Microstructure and magnetic properties of magnetic fluids consisting of shifted dipole particles under the influence of an external magnetic fieldWeeber, R.; Klinkigt, M.; Kantorovich, S.; Holm, C.
2019Microstructure and magnetoresistance of Co90Fe10/Cu and Co65Fe26Ni9/Cu multilayersMilyaev, M. A.; Naumova, L. I.; Bannikova, N. S.; Proglyado, V. V.; Patrakov, E. I.; Krinitsina, T. P.; Ustinov, V. V.
2023Microstructure and phase composition of hard alloys produced from nanocrystalline powder mixture WC–6wt.%Co with C, Al and ZrC additivesBriakunov, S. V.; Kurlov, A. S.
2013Microstructure evolution during warm working of Ti-5Al-5Mo-5V-1Cr-1Fe at 600 and 800°CZherebtsov, S. V.; Murzinova, M. A.; Klimova, M. V.; Salishchev, G. A.; Popov, A. A.; Semiatin, S. L.
2018Microstructure of (Ba 0.75 ,Sr 0.25 )TiO 3 based glass-ceramics doped by MnTurygin, A. P.; Abramov, A. S.; Alikin, D. O.; Chezganov, D. S.; Esin, A. A.; Baturin, I. S.; Song, X.; Zhang, T.; Zhang, Y.; Hu, K.; Zhao, Z.; Shur, V. Y.; Шур, В. Я.
2020Microstructure of 1469 aluminum alloy after severe plastic deformation and ion irradiationGushchina, N. V.; Ovchinnikov, V. V.; Makhin'Ko, F. F.; Kaigorodova, L. I.; Rasposienko, D. Yu.
2012Microstructure of bidisperse ferrofluids in a monolayerDobroserdova, A.; Minina, E.; Cerdà, J. J.; Holm, C.; Kantorovich, S.
2013Microstructure of bidisperse ferrofluids in a thin layerMinina, E. S.; Muratova, A. B.; Cerdá, J. J.; Kantorovich, S. S.
2022Microstructure of Joints Processed by Ultrasonic Consolidation of Nickel SheetsShayakhmetova, E. R.; Murzinova, M. A.; Zadorozhniy, V. S.; Nazarov, A. A.
2020Morphology and microstructure evolution of gold nanostructures in the limited volume porous matricesYakimchuk, D. V.; Bundyukova, V. D.; Ustarroz, J.; Terryn, H.; Baert, K.; Kozlovskiy, A. L.; Zdorovets, M. V.; Khubezhov, S. A.; Trukhanov, A. V.; Trukhanov, S. V.; Panina, L. V.; Arzumanyan, G. M.; Mamatkulov, K. Z.; Tishkevich, D. I.; Kaniukov, E. Y.; Sivakov, V.
2020Non-crystallising Glass Sealants for SOFC: Effect of Y2O3 AdditionKrainova, D. A.; Saetova, N. S.; Kuzmin, A. V.; Raskovalov, A. A.; Eremin, V. A.; Ananyev, M. V.; Steinberger-Wilckens, R.
2018Prediction of grain size evolution for low alloyed steelsDub, V.; Churyumov, A.; Rodin, A.; Belikov, S.; Barbolin, A.