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Method of Changing the Structure of Cast Fe-Al Alloys By Inputting Titanium-containing Modifiers.
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- KnE Materials Science, 2019, p. 221, doi. 10.18502/kms.v5i1.3972
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- Article
Research on the Process of Al-Mo-Ti Master Alloy Dissolution in Titanium.
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- KnE Materials Science, 2019, p. 246, doi. 10.18502/kms.v5i1.3975
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- Article
Steel Micro-alloying with Boron: A Perspective Direction to Reduce the Consumption of Manganese Ferroalloys.
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- KnE Materials Science, 2019, p. 297, doi. 10.18502/kms.v5i1.3982
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- Article
Stabilization of Self-slaking Slags from Ferroalloy Production.
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- KnE Materials Science, 2019, p. 278, doi. 10.18502/kms.v5i1.3979
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- Article
Study of the Process of Alloying Steel By Nitrated Chromium.
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- KnE Materials Science, 2019, p. 239, doi. 10.18502/kms.v5i1.3974
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- Article
Density of Chrome-Nickel Ferroalloys.
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- KnE Materials Science, 2019, p. 291, doi. 10.18502/kms.v5i1.3981
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The Using Boron-containing Materials in Ferroalloy Industry.
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- KnE Materials Science, 2019, p. 285, doi. 10.18502/kms.v5i1.3980
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- Article
Stabilization of Disintegrating Ferroalloy and Steelmaking Slags.
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- KnE Materials Science, 2019, p. 271, doi. 10.18502/kms.v5i1.3978
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- Article
Use of Vanadium for Low-alloy Steel Manufacturing at JSC "EVRAZ NTMK".
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- KnE Materials Science, 2019, p. 215, doi. 10.18502/kms.v5i1.3971
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- Article
Metal Phase Formation in Bubbling Reduction of Nickel and Iron from Oxide Melt.
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- KnE Materials Science, 2019, p. 207, doi. 10.18502/kms.v5i1.3970
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Promising Measures to Reduce the Harmful Effects of Man-made Waste from Ferroalloy Production.
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- KnE Materials Science, 2019, p. 263, doi. 10.18502/kms.v5i1.3977
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- Article
Microstructure of Complex Silicon-containing Modifier.
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- KnE Materials Science, 2019, p. 254, doi. 10.18502/kms.v5i1.3976
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- Article
Simulation of the Melting Process for Complex Nickel-containing Ferroalloys in Steel.
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- KnE Materials Science, 2019, p. 231, doi. 10.18502/kms.v5i1.3973
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- Article
Nitrided Ferroalloy Production By Metallurgical SHS Process: Scientific Foundations and Technology.
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- KnE Materials Science, 2019, p. 191, doi. 10.18502/kms.v5i1.3969
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- Article
Features of Smelting Carbon Ferrochrome in AC and DC Electric Arc Furnace.
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- KnE Materials Science, 2019, p. 159, doi. 10.18502/kms.v5i1.3964
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- Article
Metallothermic Production of Boron-containing Silicon Barium.
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- KnE Materials Science, 2019, p. 177, doi. 10.18502/kms.v5i1.3967
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- Article
Production of Ferroalloys and Recycling in the Continuous Oxygen Reactor.
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- KnE Materials Science, 2019, p. 173, doi. 10.18502/kms.v5i1.3966
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- Article
Manufacturing and Application of Complex Ferroalloys.
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- KnE Materials Science, 2019, p. 138, doi. 10.18502/kms.v5i1.3961
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- Article
The Reduction of Boron By Silicothermal Method.
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- KnE Materials Science, 2019, p. 184, doi. 10.18502/kms.v5i1.3968
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- Article
Application of the Aluminosilicon Manganese to Obtain Refined Grades of Ferromanganese.
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- KnE Materials Science, 2019, p. 154, doi. 10.18502/kms.v5i1.3963
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- Article
Dephosphorization of Manganese Ore Raw Materials.
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- KnE Materials Science, 2019, p. 145, doi. 10.18502/kms.v5i1.3962
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- Article
Recent Ferroalloy Studies at Istanbul Technical University.
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- KnE Materials Science, 2019, p. 101, doi. 10.18502/kms.v5i1.3956
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- Article
Development of the New Method for Oxidized Nickel Ore Processing.
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- KnE Materials Science, 2019, p. 162, doi. 10.18502/kms.v5i1.3965
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- Article
The Thermodynamic Evaluation of the Interphase Distribution of Elements in the Chromium and Nickel-containing System.
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- KnE Materials Science, 2019, p. 126, doi. 10.18502/kms.v5i1.3959
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- Article
Structure and Phase Composition of V-Al-N-C Master Alloy.
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- KnE Materials Science, 2019, p. 118, doi. 10.18502/kms.v5i1.3958
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- Article
Phase Composition of Mo-Si-V Hypoeutectic Alloys.
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- KnE Materials Science, 2019, p. 108, doi. 10.18502/kms.v5i1.3957
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- Article
Processing of Vanadium-containing Converter Slag to Produce Higher-purity Vanadium Pentoxide.
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- KnE Materials Science, 2019, p. 134, doi. 10.18502/kms.v5i1.3960
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- Article
Characteristics of Metal Reduction During Prereduction of Chromite types of Ore.
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- KnE Materials Science, 2019, p. 92, doi. 10.18502/kms.v5i1.3955
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- Article
Prospects for the Ferronickel Production Development from the Urals Oxidized Nickel Ores.
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- KnE Materials Science, 2019, p. 77, doi. 10.18502/kms.v5i1.3954
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Promising Directions of the Application for Poor Raw Materials of the Ferroalloy Production.
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- KnE Materials Science, 2019, p. 70, doi. 10.18502/kms.v5i1.3953
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Manganese Ferroalloys of Russia.
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- KnE Materials Science, 2019, p. 54, doi. 10.18502/kms.v5i1.3952
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Development of Smelting Technology of Complex Ferroalloy with the Use of High-ash Coals.
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- KnE Materials Science, 2019, p. 46, doi. 10.18502/kms.v5i1.3951
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On Mineral Resources for Ferroalloy Production.
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- KnE Materials Science, 2019, p. 29, doi. 10.18502/kms.v5i1.3950
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Metal Industry Development in the Conditions of Formation of New Technological and Institutional Trends.
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- KnE Materials Science, 2019, p. 15, doi. 10.18502/kms.v5i1.3949
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Situation and Development of Ferroalloy Metallurgy in Russia.
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- KnE Materials Science, 2019, p. 1, doi. 10.18502/kms.v5i1.3948
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- Article