Автор туралы ақпарат

Leont’ev, L. I.

Шығарылым Бөлім Атауы Файл
Том 46, № 1 (2016) Article The development of new metallurgical materials and technologies. Part 1
Том 46, № 5 (2016) Article The development of new metallurgical materials and technologies. Part 2. Powder nanomaterials
Том 46, № 7 (2016) Article Thermodynamics of oxygen solutions in nickel melts containing aluminum and titanium
Том 46, № 9 (2016) Article Formation of metallic phase by passing gaseous reducing agent through multicomponent oxide melt. Part 1. Theoretical principles
Том 46, № 10 (2016) Article Improving blast-furnace efficiency by regulating the properties of iron-ore pellets
Том 46, № 11 (2016) Article Calculations of manganese ferroalloys production efficiency from different ores
Том 47, № 1 (2017) Article Formation of metallic phase on reducing-gas injection in multicomponent oxide melt. Part 2. Density and surface properties
Том 47, № 3 (2017) Article Solubility of oxygen in Fe–Co melts containing titanium
Том 47, № 5 (2017) Article Physicochemical characteristics, production and application of boron-bearing complex ferroalloys
Том 47, № 8 (2017) Article Improved manganese extraction in the production of manganese ferroalloys
Том 47, № 9 (2017) Article Equilibrium boron distribution between Fe–C–Si–Al melt and boron-bearing slag
Том 47, № 12 (2017) Article Formation of Metallic Phase on Reducing-Gas Injection in Multicomponent Oxide Melt. Part 3. Separation of Ferronickel and Oxide Melt
Том 48, № 1 (2018) Article Oxygen Solubility in Fe–Co Melts Containing Carbon
Том 48, № 3 (2018) Article Thermodynamics of Oxygen Solution in Fe–Ni Melts Containing Boron
Том 48, № 5 (2018) Article SHS Technology for Composite Ferroalloys. 1. Metallurgical SHS: Nitrides of Ferrovanadium and Ferrochromium
Том 48, № 7 (2018) Article SHS Technology for Composite Ferroalloys. 2. Synthesis of Ferrosilicon Nitride and Ferrotitanium Boride
Том 49, № 1 (2019) Article Utilization of Manganese in Russian Metallurgy
Том 49, № 9 (2019) Article Molecular–Dynamic Simulation of the Melt of an Industrial Oxide–Fluoride Mold Flux

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