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2. Heat Transfer Analysis of Copper Stave in Blast Furnace Based on Slag Crust Characteristics.

3. Simulation and Validation of Thickness of Slag Crust on the Copper Stave in the High-Temperature Area of Blast Furnace

5. X‐ray Computed Tomography Characterization of Slag Crust and the Effect of Bubbles and Metallic Iron in Slag on Heat Transfer to Copper Stave.

6. Методика оцінки відокремлення шлакової...

7. Simulation and Validation of Thickness of Slag Crust on the Copper Stave in the High-Temperature Area of Blast Furnace.

12. Investigation of Formation and Shedding Behavior of Slag Crust in a Large Blast Furnace with Copper Stave: Flow Properties and Crystallization Characteristics

15. Soft-sensing method for slag-crust state of blast furnace based on two-dimensional decision fusion

17. Physicochemical Principles of Spinel Formation during Electrode Arc Welding and Cladding Under Flux.

23. Condition Recognition Method with Information Granulation for Burden Distribution in Blast Furnace.

24. Методика оцінки відокремлення шлакової корки при наплавленні низько- та середньовуглецевих сталей

25. ANALYSIS OFAPPLICABILITY OF SLAG CRUST IN PRODUCTION OF AGGLOMERATED FLUXES.

26. Analysis of Erosion Mechanism of Wear‐Resistant Layer in Large Blast Furnace Tuyere.

27. Thermal Test of Nodular Cast Iron Cooling Stave

28. Ultrasonic diagnosis in control of the slag crust

30. The slag crust in high-temperature iron ore smelting

31. Monitoring the condition of the slag crust in blast furnaces

34. Damage Mechanism of Copper Staves in a 3200 m3 Blast Furnace

36. Two-Stage Decision-Making Method for Burden Distribution Based on Recognition of Conditions in Blast Furnace.

37. FLUX FOR ELECTRIC ARC SURFACING PROVIDING HIGH-TEMPERATURE REMOVAL OF SLAG COATING.

38. Application of High‐ and Low‐Reactivity Cokes in Hydrogen‐Rich Blast Furnaces.

40. Damage Mechanism of Copper Staves in a 3200 m3 Blast Furnace

41. ПРИМЕНЕНИЕ МЕТОДА СИНГУЛЯРНОГО РАЗЛОЖЕНИЯ ДЛЯ АНАЛИЗА АКУСТИКО-ЭМИССИОННЫХ ДАННЫХ

43. Study of the Effect of K2O, Na2O, MgO, Al2O3 Oxide Additions on Density, Viscosity, Separability and Covering Capacity of CaO–MnO–SiO2 System Slag in Low Carbon Steel Automatic Submerged Arc Welding

44. Effect of Local Combined Thermal Action on Value and Distribution of Residual Stresses in Steel 20 Plate.

45. Condition Recognition Strategy Based on Fuzzy Clustering With Information Granulation for Blast Furnace

46. Wear Resistance of Titanium Carbide-Modified 25Kh5FMS Deposited Metal.

47. SELECTION OF SHIELDING GAS FOR MECHANIZED ARC WELDING OF DISSIMILAR STEELS.

48. Investigation of slag formed in the submerged arc welding of the minerals Urals

49. Research on low-carbon smelting technology of blast furnace – optimized design of blast furnace.

50. Agglomerated flux for welding of corrosion-resistant high-strength nitrogen-containing steels.

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