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Complex Vanadium-Containing Ferroalloys

Metallurgist, 2021
The possibility of preparing complex vanadium-containing ferroalloys directly from vanadium slag and their application in steelmaking are considered in a review. Complex alloys make it possible to expand the ore base for ferroalloy production since it may involve poorer and more complex charge materials.
L. A. Smirnov   +3 more
openaire   +1 more source

Ferroalloys Dispersion (Atomizing)

2020
Granular ferroalloys obtained by dispersing melts with air and water are widely used in various industries.
Mikhail Gasik   +2 more
openaire   +1 more source

The analysis of ferroalloys

Talanta, 1986
Procedures are outlined for the determination of the principal elements in ferroalloys.
openaire   +2 more sources

Microstructural model of the behavior of a ferroalloy with shape memory in a magnetic field

Mechanics of Advanced Materials and Structures, 2022
In the article, within the framework of the theory of micromagnetism, a magneto-elastic microstructural model of the behavior of a ferromagnetic material with the shape memory (Heusler alloy) in a magnetic field is constructed.
A. Rogovoy, O. Stolbova
semanticscholar   +1 more source

Investigation of Pozzolan Activity, Chemical and Granulometric Composition of Micro- and Nanosilicon of the Bratsk Ferroalloy Plant

Minerals
The article presents the findings of a study conducted on a range of microsilicon grades selected at the Bratsk Ferroalloy Plant. The following analytical techniques were employed: X-ray fluorescence analysis, X-ray diffraction analysis, a granulometric ...
A. Karlina   +2 more
semanticscholar   +1 more source

THERMODYNAMIC MODELING OF THE PROCESS OF SMELTING A COMPLEX CHROMIUM-MANGANESE-SILICON-CONTAINING FERROALLOY

Science and Technology of Kazakhstan
This article presents the results of thermodynamic modeling of the process of smelting chromium-manganese-silicon-containing ferroalloy from technogenic raw materials of Kazakhstan.
A. Zhakan   +4 more
semanticscholar   +1 more source

Energy-saving ferroalloy production

Steel in Translation, 2017
In the laboratory, ore–coal blends consisting of small components (ore, coal, and flux) are prepared. If the coal consumption in the reduction of metals is standardized, ferroalloys with moderate iron content may be obtained; the carbon content in the alloys may be adjusted within the range 0.80–1.5%.
S. M. Tleugabulov, E. B. Tazhiev
openaire   +1 more source

Alkaline Earth Metal Ferroalloys

2020
Alkaline earth metals (AEM): beryllium, magnesium, calcium, strontium and barium belong to the IIA group of the Periodic system of elements.
Mikhail Gasik   +2 more
openaire   +1 more source

Metallurgy of Chromium Ferroalloys

2020
Chromium—element of the VIb group of the Periodic system of elements. Atomic number 24; atomic mass 51.996; electronic configuration 3d54s1; melting point 1907 °C and boiling point 2671 °C; density 7.19 g/cm3; oxidation state 2, 3 and 6. Chromium has a body-centered cubic lattice and does not have allotropy.
Mikhail Gasik   +2 more
openaire   +1 more source

Ferroalloy production in Russia

Steel in Translation, 2015
Russian production and demand for ferroalloys are considered. The main ferroalloy producers are noted. The volume of imports and exports and the apparent demand for the main Russian ferroalloys between 1990 and 2014 are detailed. The change in the structure of ferroalloy production, globally and in Russia, is outlined.
L. I. Leont’ev   +3 more
openaire   +1 more source

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