Ultra-high-temperature tantalum-hafnium carbonitride ceramics fabricated by combustion synthesis and spark plasma sintering VS Buinevich, AA Nepapushev, DO Moskovskikh, KV Kuskov, SN Yudin, ... Ceramics International 47 (21), 30043-30050, 2021 | 25 | 2021 |
Low-temperature synthesis of ultra-high-temperature HfC and HfCN nanoparticles SN Yudin, AV Kasimtsev, SS Volodko, IA Alimov, GV Markova, ... Materialia 22, 101415, 2022 | 20 | 2022 |
Mechanism and kinetics of high-temperature oxidation of medium-and high-entropy carbides in air S Yudin, A Sedegov, D Moskovskikh, S Volodko, K Kuskov, V Suvorova, ... Materials & Design 231, 112048, 2023 | 14 | 2023 |
Fabrication of high-entropy carbide ceramics (Ti, Zr, Hf, Nb, Ta) C through low-temperature calcium-hydride reduction of oxides S Yudin, S Volodko, D Moskovskikh, I Alimov, A Guryanov, S Zhevnenko, ... Journal of the European Ceramic Society 43 (12), 5108-5116, 2023 | 13 | 2023 |
Hard wear-resistant Ti-Si-C coatings for Cu-Cr electrical contacts P Kiryukhantsev-Korneev, A Sytchenko, D Moskovskikh, K Kuskov, ... Materials 16 (3), 936, 2023 | 12 | 2023 |
Bulk Nb3Al intermetallic compound: Synthesis and high-temperature properties SN Yudin, AV Kasimtsev, AV Korotitskiy, TA Sviridova, GV Markova, ... Materials Science and Engineering: A 790, 139715, 2020 | 9 | 2020 |
Metal-thermal synthesis and properties of ultra-and nanopowders of titanium carbide AV Kasimtsev, NY Tabachkova, GM Voldman, SN Yudin Tsvetnye Metally (Nonferrous metals), 54-58, 2014 | 9 | 2014 |
Calciothermic powders of rare metals and intermetallic compounds AV Kasimtsev, SN Yudin, YV Levinsky Non-Ferr. Met. 49, 31-50, 2020 | 8 | 2020 |
Synthesis of powder alloys based on the Ti–Ni–Hf system via a calcium hydride reduction process AV Kasimtsev, SS Volod’ko, SN Yudin, TA Sviridova, VV Cheverikin Inorganic Materials 55, 449-457, 2019 | 8 | 2019 |
Properties of the intermetallic phase Nb3Al prepared by a calcium hydride reduction process AV Kasimtsev, SN Yudin, AI Logacheva, TA Sviridova Inorganic Materials 51, 43-50, 2015 | 7 | 2015 |
Features of β-phase decay in Ti–22Nb–6Zr alloy SN Yudin, AV Kasimtsev, NY Tabachkova, TA Sviridova, GV Markova, ... Inorganic Materials: Applied Research 10, 1115-1122, 2019 | 6 | 2019 |
Production of a sintered alloy based on the TiAl intermetallic compound: Part 2. Investigation into forming and sintering processes AA Zaitsev, YY Kaplanskii, ZA Sentyurina, EA Levashov, AV Kasimtsev, ... Russian Journal of Non-Ferrous Metals 57, 113-123, 2016 | 6 | 2016 |
Production of a sintered alloy based on the TiAl intermetallic compound. Part 1: Calcium-hydride fabrication technology of the Ti–47Al–2Nb–2Cr powder alloy and its properties AV Kasimtsev, SN Yudin, TA Sviridova, AV Malyarov, AA Zaitsev, ... Russian Journal of Non-Ferrous Metals 56, 548-554, 2015 | 6 | 2015 |
High-strength gypsum binder with improved water-resistance coefficient derived from industrial wastes M Kamarou, D Moskovskikh, K Kuskov, S Yudin, AA Akinwande, ... Waste Management & Research 43 (2), 213-224, 2025 | 5 | 2025 |
Fabrication of Biomedical Ti-Zr-Nb by Reducing Metal Oxides with Calcium Hydride S Yudin, I Alimov, S Volodko, A Gurianov, G Markova, A Kasimtsev, ... Journal of Functional Biomaterials 14 (5), 271, 2023 | 5 | 2023 |
Fabrication of Refractory Intermetallic Cr2Ta by Reducing Metal Oxides with Calcium Hydride S Yudin, S Volodko, A Guryanov, A Kasimtsev, T Sviridova, I Alimov, ... Metallurgical and Materials Transactions B 55 (3), 1261-1276, 2024 | 4 | 2024 |
Annealing of a (Hf0. 2Ta0. 2Ti0. 2Nb0. 2Zr0. 2) C high-entropy ceramic up to 2100° C: In-situ removal of oxide impurities and microstructural modification H Guo, D Moskovskikh, S Yudin, Z Cheng, W Zou, S Volodko, C Zhang Ceramics International 49 (23), 37872-37880, 2023 | 4 | 2023 |
Kinetics and Mechanism of Calcium Hydride Synthesis of the Intermetallic Compound Cr2Ta AM Guryanov, SN Yudin, AV Kasimtsev, SS Volodko, IA Alimov, ... Inorganic Materials 59 (5), 463-474, 2023 | 4 | 2023 |
Thermophysical Properties of High-entropy Carbide (HfTaTiNbZr) C at Temperatures of 2500–5500 K AI Savvatimskiy, SV Onufriev, AS Sedegov, SN Yudin, DO Moskovskikh High Temperature 60 (5), 612-615, 2022 | 4 | 2022 |
Concentration and state of light elements in titanium carbide nanopowders KV Grigorovich, AV Alpatov, BA Rumyantsev, AV Kasimtsev, ... Inorganic Materials 51, 451-459, 2015 | 4 | 2015 |