Works matching IS 10834877 AND DT 2022 AND VI 62 AND IP 6
Results: 19
Experimental Platform Electric Furnace with Heating Elements Placed Under a Hearth Plate.
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- Refractories & Industrial Ceramics, 2022, v. 62, n. 6, p. 634, doi. 10.1007/s11148-022-00668-y
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Changes in the Crystal Structure and Electrophysical Properties of Polycrystalline Indium Oxide When Heated in Air.
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- Refractories & Industrial Ceramics, 2022, v. 62, n. 6, p. 711, doi. 10.1007/s11148-022-00667-z
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Development of a Dezincing Method for Iron-Containing Wastes by Heat Treatment in a Reducing Atmosphere.
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- Refractories & Industrial Ceramics, 2022, v. 62, n. 6, p. 706, doi. 10.1007/s11148-022-00666-0
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Application of the Statistical Weibull Theory to Estimate the Thermal Shock Resistance of Ceramic Materials.
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- Refractories & Industrial Ceramics, 2022, v. 62, n. 6, p. 699, doi. 10.1007/s11148-022-00665-1
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- Article
Development and Application of SHS Ferrosilicon Nitride to Increase the Resistance of Taphole Clays for Blast Furnaces.
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- Refractories & Industrial Ceramics, 2022, v. 62, n. 6, p. 692, doi. 10.1007/s11148-022-00664-2
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Obtaining Porous Ceramic Silicon Carbide-Based Converters for Dehydrogenation of Ethylbenzene into Styrene.
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- Refractories & Industrial Ceramics, 2022, v. 62, n. 6, p. 687, doi. 10.1007/s11148-022-00663-3
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- Article
Overcoming the Problems Associated with the Entropy Parameter.
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- Refractories & Industrial Ceramics, 2022, v. 62, n. 6, p. 680, doi. 10.1007/s11148-022-00662-4
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- Article
Composition and Technology for Applying a Refractory Coating for Wood Using a Nanosize Filler.
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- Refractories & Industrial Ceramics, 2022, v. 62, n. 6, p. 676, doi. 10.1007/s11148-022-00661-5
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- Article
Study of Cermet Coatings Formed By Carbo-Vibro-Arc Hardening and Containing Nanosized Al<sub>2</sub>O<sub>3</sub>.
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- Refractories & Industrial Ceramics, 2022, v. 62, n. 6, p. 672, doi. 10.1007/s11148-022-00660-6
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Thermal Stability of Composites and Coatings Based on MoSi<sub>2</sub>–B–Al<sub>2</sub>O<sub>3</sub> When Heated in Air to 1600°C.
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- Refractories & Industrial Ceramics, 2022, v. 62, n. 6, p. 668, doi. 10.1007/s11148-022-00659-z
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- Article
Superhard Composite Material Based on Cubic Boron Nitride Plated With Titanium Compounds.
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- Refractories & Industrial Ceramics, 2022, v. 62, n. 6, p. 663, doi. 10.1007/s11148-022-00658-0
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- Article
Features of Nanosize Boehmite Hydrothermal Synthesis.
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- Refractories & Industrial Ceramics, 2022, v. 62, n. 6, p. 658, doi. 10.1007/s11148-022-00657-1
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- Article
Interaction of Melted and Cast Refractories with Optical Glass Melts.
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- Refractories & Industrial Ceramics, 2022, v. 62, n. 6, p. 653, doi. 10.1007/s11148-022-00656-2
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- Article
Cement-Free Refractory Concretes. Part 12-2. Siliceous Composition HCBS and Ceramic Concretes.
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- Refractories & Industrial Ceramics, 2022, v. 62, n. 6, p. 640, doi. 10.1007/s11148-022-00655-3
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- Article
Improvement of Thermal Performance of a Shaft Furnace for Asbestos Raw Material Drying.
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- Refractories & Industrial Ceramics, 2022, v. 62, n. 6, p. 628, doi. 10.1007/s11148-022-00654-4
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- Article
Transfer Aspects of Electric Through-Type Furnaces for Heat Treatment of Stone-Cast Ware to Gas Heating.
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- Refractories & Industrial Ceramics, 2022, v. 62, n. 6, p. 623, doi. 10.1007/s11148-022-00653-5
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- Article
Innovative Method of Active Heat Protection of Pipelines for Moving Hot Bulk Materials and Cylindrical Apparatuses.
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- Refractories & Industrial Ceramics, 2022, v. 62, n. 6, p. 618, doi. 10.1007/s11148-022-00652-6
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- Article
Behavior of the Fireclay Lining of a Coke Gas Cupola Furnace When Melting Cast Iron with Anode Scrappage in Electrolysis Production. Part 2<sup>1</sup>.
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- Refractories & Industrial Ceramics, 2022, v. 62, n. 6, p. 614, doi. 10.1007/s11148-022-00651-7
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Ensuring Safety in Bauxite Mines Development.
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- Refractories & Industrial Ceramics, 2022, v. 62, n. 6, p. 611, doi. 10.1007/s11148-022-00650-8
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- Article