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Study of the Phase and Mineralogical Properties of Converter Slag During Splashing to Improve Lining Resistance
Sinelnikov V.O., Kalisz D., Kuzemko R.D.
Investigation of the Physicochemical Properties of Slag Splashed on the Lining of an Oxygen Converter1
Kalisz D., Sinelnikov V.O., Kuglin K.
Increase in EAF Lining Life with Use of Hot-Briquetted Iron in a Charge
Emel’yanov V.V., Kolokolov E.A., Belonozhko S.S., Korostelev A.A., S’emshchikov N.S., Semin A.E., Kotel’nikov G.I., Murzin I.S.
Titanium-Alumina Slag — Semifunctional Technogenic Resource of High-Alumina Composition. Part 1. Substance Composition and Titanium-Alumina Slag Properties
Rytvin V.M., Perepelitsyn V.A., Ponomarenko A.A., Gil’varg S.I.
Ferrochrome Aluminothermal Slags as a Multifunctional Technogenic Resource. Part 2. Use of Ferrochrome Slags in Refractories and Metallurgy1
Rytvin V.M., Perepelitsyn V.A., Ponomarenko A.A., Gil’varg S.I.
Ferrochrome Aluminothermal Slags as a Multifunctional Technogenic Resource. Part 1. Ferrochrome Slag Material Composition and Properties
Rytvin V.M., Perepelitsyn V.A., Ponomarenko A.A., Gil’varg S.I.
Physicochemical Study of Alumochromium-Containing Refractories Developed by Self-Propagating High-Temperature Synthesis
Satbaev S.B., Satbaev B.N., Koketaev A.I., Aimbetova É.O., Shalabaev N.T.
Slag – Refractory Interactions During Ilmenite Smelting: Thermodynamic Simulation and Experimental Data
Run H., Xing Q., Xiaodong L., Pengsheng L., Jinzhu Z.
Refractory Porous Materials Based on Secondary Resources and Phosphate Compounds
Podbolotov K.B.
Periclase-Carbon Refractory Properties with a Different Amount of Graphite in the Charge Using Liquid PFR and Graphite as Modifiers
Semchenko G.D., Povshuk V.V., Starolat E.E., Borisenko O.N.
Choice of Refractory Filler for Preparing Concrete Partitions of a CBCM Intermediate Ladle
Vdovin K.N., Tochilkin V.V., Pivovarova K.G., Feoktistov N.A.
Effect of Refining Slag Phase Composition on Ladle Furnace Unit Lining Life1
Sheshukov O.Y., Nekrasov I.V., Mikheenkov M.A., Egiazar’yan D.K., Ovchinnikova L.A., Kashcheev I.D., Zemlyanoi K.G., Kamenskikh V.A.
Contemporary Methods for Modeling High-Temperature Systems1
Kushnerev I.V., Aksel’rod L.M., Platonov A.A.
Environmental Technology for the Integrated Disposal of Man-Made Wastes of the Metallurgical Industry: Self-Curing, Chemically Resistant Refractory Mass1
Satbaev B.N., Koketaev A.I., Aimbetova É.O., Shalabaev N.T., Satbaev A.B.
Experience of Using Alumina Aluminum-Containing Flux During Treatment of “Aluminum-Free” Steels1
Sheshukov O.Y., Nekrasov I.V., Mikheenkov M.A., Egiazar’yan D.K., Lobanov D.A., Neugodnikov O.V., Ivanov B.A.
Effect of Refractory Structure on Operating Properties
Isagulov A.Z., Kulikov V.Y., Kvon S.S., Dostaeva A.M., Shcherbakova E.P.
Chromite-Periclase Refractory Wear in Zinc Production Waelz Kiln Reaction Zone
Aksel’rod L.M., Yarushina T.V., Maryasev I.G., Privalov I.V., Andrievskikh A.L.
Refractory Materials Based on Secondary Resources and Phosphate Compounds
Podbolotov K.B., Volochko A.T., Khort N.A., Gusarov S.V.
Titanium-Alumina Slag – Semifunctional Technogenic Resource of High-Alumina Composition. Part 2. Use of Ferrotitanium Slag for Producing Refractories in Metallurgy and Other Branches of Industry1
Rytvin V.M., Perepelitsyn V.A., Ponomarenko A.A., Gil’varg S.I.
Fused Refractory Oxides Increasing Nonferrous Metallurgy Unit Lining Life
Slovikovskii V.V., Gulyaeva A.V.
Modeling of the Phase Composition of Refractory and Slag Systems, Optimization of Slag Adjustment, and Stabilization of Secondary Steelmaking Slags
Kozlov V.V., Shevchik A.P., Suvorov S.A., Arbuzova N.V., Kuznetsov D.V.
Creation of High-Efficiency Promising Refractory Materials and Constructions for the Lining of Metallurgical Units
Slovikovskii V.V., Gulyaeva A.V.
Stabilization of Refining Slag by Adjusting Its Phase Composition and Giving It the Properties of Mineral Binders
Sheshukov O.Y., Nekrasov I.V., Mikheenkov M.A., Egiazar’yan D.K., Lobanov D.A.
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