Energy-efficient direct current arc plasma synthesis of tantalum carbide powder by advanced vacuum-free method; International Journal of Refractory Metals and Hard Materials; Vol. 112
| Parent link: | International Journal of Refractory Metals and Hard Materials Vol. 112.— 2023.— [106131, 10 p.] |
|---|---|
| Awduron Corfforaethol: | Национальный исследовательский Томский политехнический университет Инженерная школа энергетики Отделение электроэнергетики и электротехники (ОЭЭ), Национальный исследовательский Томский политехнический университет Инженерная школа информационных технологий и робототехники Отделение автоматизации и робототехники, Национальный исследовательский Томский политехнический университет Исследовательская школа химических и биомедицинских технологий Лаборатория "Химическая инженерия и молекулярный дизайн" |
| Awduron Eraill: | Pak A. Ya. Aleksandr Yakovlevich, Korchagina A. P. Anastasiya Pavlovna, Gumovskaya A. A. Arina Andreevna, Bolatova Zh. S. Zhanar Sanatovna, Yankovsky S. A. Stanislav Aleksandrovich, Arysheva G. V. Galina Vladislavovna, Kolobova E. N. Ekaterina Nikolaevna |
| Crynodeb: | Title screen In this paper, we propose a method to manufacture tantalum carbide in open air by igniting a direct current arc discharge in a graphite crucible containing a mixture of raw materials: tantalum and carbon. Carbon burns to form carbon monoxide and carbon dioxide, which serve as a gaseous medium for the synthesis process. Using experimental and analytical procedures, we have obtained the necessary parameters — current, arcing time, and mass of the raw material — to produce the NaCl-type cubic phase of tantalum carbide. Micron- and submicron-sized tantalum carbide crystals are identified in the synthesis products. The combustion parameters of the resulting tantalum carbide are determined by differential thermal analysis. The proposed synthesis method is easier to implement, more energy-efficient, and less time-consuming than the current techniques. Режим доступа: по договору с организацией-держателем ресурса |
| Iaith: | Saesneg |
| Cyhoeddwyd: |
2023
|
| Pynciau: | |
| Mynediad Ar-lein: | https://doi.org/10.1016/j.ijrmhm.2023.106131 |
| Fformat: | Electronig Pennod Llyfr |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=669027 |
Eitemau Tebyg
Hard Metal Waste Recycling by the Atmospheric Direct Current Arc Plasma; Energy Fluxes and Radiation Effects (EFRE-2020 online)
gan: Kokorina A. I. Aleksandra Ivanovna
Cyhoeddwyd: (2020)
gan: Kokorina A. I. Aleksandra Ivanovna
Cyhoeddwyd: (2020)
Production of HfTaTiNbZrC5 High-Entropy Carbide Micropowder in the Plasma of an Atmospheric Pressure Arc Discharge; Journal of Engineering Physics and Thermophysics; Vol. 94, iss. 1
Cyhoeddwyd: (2021)
Cyhoeddwyd: (2021)
Synthesis of silicon carbide using an AC atmospheric-pressure arc reactor; Journal of Alloys and Compounds; Vol. 1003
Cyhoeddwyd: (2024)
Cyhoeddwyd: (2024)
Direct Current Arc Plasma Synthesis of Superdisperced Powder Materials in "Tungsten-Carbon" System; Surface Modification of Materials by Ion Beams (SMMIB-2019)
gan: Pak A. Ya. Aleksandr Yakovlevich
Cyhoeddwyd: (2019)
gan: Pak A. Ya. Aleksandr Yakovlevich
Cyhoeddwyd: (2019)
Synthesis of Molybdenum Borides by the Impact of an A.C. Arc Discharge in Air; Journal of Engineering Physics and Thermophysics; Vol. 98, iss. 5
Cyhoeddwyd: (2025)
Cyhoeddwyd: (2025)
Synthesis of high-entropy diboride TiZrNbHfTaB2 by vacuum-free direct current arc plasma method; International Journal of Refractory Metals and Hard Materials; Vol. 134
Cyhoeddwyd: (2026)
Cyhoeddwyd: (2026)
Vacuum-free arc synthesis and characterization of crystalline molybdenum borides as instrumental material; Thermal Science and Engineering Progress; Vol. 67
Cyhoeddwyd: (2025)
Cyhoeddwyd: (2025)
Исследование каталитических свойств порошков системы «молибден–бор», синтезированных безвакуумным дуговым методом; Известия Томского политехнического университета [Известия ТПУ]. Инжиниринг георесурсов; Т. 336, № 5
gan: Васильева Ю. З. Юлия Захаровна
Cyhoeddwyd: (2025)
gan: Васильева Ю. З. Юлия Захаровна
Cyhoeddwyd: (2025)
Ash Waste Utilization via Direct Current Arc Plasma with Production of SiC and AlN; Waste and Biomass Valorization; Vol. 12, iss. 10
Cyhoeddwyd: (2021)
Cyhoeddwyd: (2021)
Electric Arc Synthesis of Biomorphic Titanium Carbide from Wood Sawdust; Solid Fuel Chemistry; Vol. 56, iss. 3
Cyhoeddwyd: (2022)
Cyhoeddwyd: (2022)
Large-Scale Synthesis and Applications of Hafnium-Tantalum Carbides; Advanced Functional Materials; Vol. 32, iss. 38
Cyhoeddwyd: (2022)
Cyhoeddwyd: (2022)
Oxidation Properties of High-Entropy Boride (Ti0.2Zr0.2Nb0.2Hf0.2Ta0.2)B2 Synthesized by DC Arc Discharge Plasma; Bulletin of the Russian Academy of Sciences: Physics; Vol. 89, Suppl. 2
Cyhoeddwyd: (2025)
Cyhoeddwyd: (2025)
Synthesis of Mo2C-based material in DC arc discharge plasma under ambient air conditions; Materials Chemistry and Physics; Vol. 314
Cyhoeddwyd: (2024)
Cyhoeddwyd: (2024)
A Study of Transient Processes in a High-Current Vacuum-Arc Anode Spot Using High-Speed Spectroscopy and Videorecording; Russian Physics Journal; Vol. 64, iss. 1
Cyhoeddwyd: (2021)
Cyhoeddwyd: (2021)
Comparison of glow, arc, and magnetron direct current discharges; Resource-Efficient Technologies; No 2
gan: Abrahamyan A. S.
Cyhoeddwyd: (2019)
gan: Abrahamyan A. S.
Cyhoeddwyd: (2019)
Влияние энергии на фазовый состав продукта электродугового синтеза системы "вольфрам-углерод" , полученный в самоэкранирующейся автономной газовой среде; Перспективные материалы; № 10
gan: Пак А. Я. Александр Яковлевич
Cyhoeddwyd: (2020)
gan: Пак А. Я. Александр Яковлевич
Cyhoeddwyd: (2020)
Электродуговой синтез карбида вольфрама из рудных концентратов; Известия Томского политехнического университета [Известия ТПУ]. Инжиниринг георесурсов; Т. 332, № 5
gan: Пак А. Я. Александр Яковлевич
Cyhoeddwyd: (2021)
gan: Пак А. Я. Александр Яковлевич
Cyhoeddwyd: (2021)
Vacuumless synthesis of tungsten carbide in a self-shielding atmospheric plasma of DC arc discharge; International Journal of Refractory Metals and Hard Materials; Vol. 93
Cyhoeddwyd: (2020)
Cyhoeddwyd: (2020)
Formation and Dynamics of the Current Sheath in the Plasma Shell of a Z-Pinch in the Microsecond Implosion Regime; Energy Fluxes and Radiation Effects (EFRE-2020 online)
Cyhoeddwyd: (2020)
Cyhoeddwyd: (2020)
Synthesis of hafnium carbide powder in atmospheric arc plasma; Technical Physics; Vol. 68, No. 6
Cyhoeddwyd: (2023)
Cyhoeddwyd: (2023)
Synthesis of transition metal carbides and high-entropy carbide TiZrNbHfTaC5 in self-shielding DC arc discharge plasma; Ceramics International; Vol. 48, iss. 2
Cyhoeddwyd: (2022)
Cyhoeddwyd: (2022)
In-situ carbide reinforced aluminium metal matrix composites obtained in pulsed arc plasma discharge; Ceramics International; Vol. 51, iss. 14
Cyhoeddwyd: (2025)
Cyhoeddwyd: (2025)
Synthesis of Crystalline Tungsten Carbide Phases under the Influence of Atmospheric Electrical Arc Plasma on Tungsten Oxide; Journal of Superhard Materials; Vol. 43, iss. 3
Cyhoeddwyd: (2021)
Cyhoeddwyd: (2021)
Spatial stabilization of arc discharges in pulsed gas tungsten arc welding; Welding in the World; Vol. 68, iss. 9
Cyhoeddwyd: (2024)
Cyhoeddwyd: (2024)
Glass waste derived silicon carbide synthesis via direct current atmospheric arc plasma; Waste Management; Vol. 144
Cyhoeddwyd: (2022)
Cyhoeddwyd: (2022)
Physical and Mechanical Properties of CrN/AlN Coating Obtained by Vacuum-Arc Deposition with Alternative Separation of Hard Substance Flows; Russian Physics Journal; Vol. 66, iss. 11
Cyhoeddwyd: (2024)
Cyhoeddwyd: (2024)
Characteristics of Temperature Field Distribution during Vacuum-Free Electric Arc Synthesis; Bulletin of the Russian Academy of Sciences: Physics; Vol. 89, Suppl. 2
Cyhoeddwyd: (2026)
Cyhoeddwyd: (2026)
A Vacuum-Free Method for Producing Cubic Titanium Carbide in the Plasma of Low-Voltage Direct-Current Arc Discharge; Technical Physics Letters; Vol. 44, iss. 12
gan: Pak A. Ya. Aleksandr Yakovlevich
Cyhoeddwyd: (2018)
gan: Pak A. Ya. Aleksandr Yakovlevich
Cyhoeddwyd: (2018)
Synthesis of molybdenum carbide catalyst by DC arc plasma in ambient air for hydrogen evolution; Materials Chemistry and Physics; Vol. 254
Cyhoeddwyd: (2020)
Cyhoeddwyd: (2020)
Silicon carbide obtaining with DC arc-discharge plasma: synthesis, product characterization and purification; Materials Chemistry and Physics; Vol. 271
Cyhoeddwyd: (2021)
Cyhoeddwyd: (2021)
X-ray radiography of aluminum cathodes eroded in high-current vacuum arcs; Current Applied Physics; Vol. 19, iss. 6
Cyhoeddwyd: (2019)
Cyhoeddwyd: (2019)
Plasma dynamic synthesis of hybrid carbide-reinforced aluminium matrix composites; Particuology; Vol. 109
Cyhoeddwyd: (2026)
Cyhoeddwyd: (2026)
Advanced Arc Plasma Synthesis of Biomorphic Silicon Carbide Using Charcoal and Silicon Dioxide in Air; Waste and Biomass Valorization; Vol. 13, iss. 1
Cyhoeddwyd: (2021)
Cyhoeddwyd: (2021)
Formation of High-Power Pulsed Titanium Ion Beams of Submillisecond Duration from Vacuum Arc Plasma; Russian Physics Journal; Vol. 65, iss. 11
Cyhoeddwyd: (2023)
Cyhoeddwyd: (2023)
Rolling current collector in direct current machines; Bulletin of the Tomsk Polytechnic University; Vol. 311, № 4 : Power engineering
gan: Avilov V. D.
Cyhoeddwyd: (2007)
gan: Avilov V. D.
Cyhoeddwyd: (2007)
The Possibility of Synthesizing Nanosize Molybdenum Carbide in Atmospheric Electrodischarge Plasma; Technical Physics Letters; Vol. 45, iss. 9
gan: Pak A. Ya. Aleksandr Yakovlevich
Cyhoeddwyd: (2019)
gan: Pak A. Ya. Aleksandr Yakovlevich
Cyhoeddwyd: (2019)
Oxidation of Fine Tantalum Particles: Metastable Intermediates and Multistep Kinetics; Oxidation of Metals; Vol. 93
Cyhoeddwyd: (2020)
Cyhoeddwyd: (2020)
Искровое плазменное спекание объемных материалов на основе SiC из углеродистого остатка термической переработки рисовой шелухи; Известия Томского политехнического университета [Известия ТПУ]. Инжиниринг георесурсов; Т. 335, № 4
Cyhoeddwyd: (2024)
Cyhoeddwyd: (2024)
Synthesis of ultrafine cubic tungsten carbide in a discharge plasma jet; International Journal of Refractory Metals and Hard Materials; Vol. 48
Cyhoeddwyd: (2015)
Cyhoeddwyd: (2015)
Influence of energy on the phase composition of the ultra-dispersed product of the molybdenum–carbon system obtained by the vacuumless arc discharge method; High Temperature Material Processes: An International Quarterly of High-Technology Plasma Processes; Vol. 24, iss. 1
gan: Pak A. Ya. Aleksandr Yakovlevich
Cyhoeddwyd: (2020)
gan: Pak A. Ya. Aleksandr Yakovlevich
Cyhoeddwyd: (2020)
Eitemau Tebyg
-
Hard Metal Waste Recycling by the Atmospheric Direct Current Arc Plasma; Energy Fluxes and Radiation Effects (EFRE-2020 online)
gan: Kokorina A. I. Aleksandra Ivanovna
Cyhoeddwyd: (2020) -
Production of HfTaTiNbZrC5 High-Entropy Carbide Micropowder in the Plasma of an Atmospheric Pressure Arc Discharge; Journal of Engineering Physics and Thermophysics; Vol. 94, iss. 1
Cyhoeddwyd: (2021) -
Synthesis of silicon carbide using an AC atmospheric-pressure arc reactor; Journal of Alloys and Compounds; Vol. 1003
Cyhoeddwyd: (2024) -
Direct Current Arc Plasma Synthesis of Superdisperced Powder Materials in "Tungsten-Carbon" System; Surface Modification of Materials by Ion Beams (SMMIB-2019)
gan: Pak A. Ya. Aleksandr Yakovlevich
Cyhoeddwyd: (2019) -
Synthesis of Molybdenum Borides by the Impact of an A.C. Arc Discharge in Air; Journal of Engineering Physics and Thermophysics; Vol. 98, iss. 5
Cyhoeddwyd: (2025)