All Stories

  1. Effect of structure of unfluxed burnt titanomagnetite pellets on strength under static compression
  2. Study of Softening Temperature Range of Agglomerate Depending on its Structure and Phase Composition
  3. A Study of the Structure and Physicochemical Properties of the Mixed Basicity Iron Ore Sinter
  4. Improvement of blast furnace production using digital technology
  5. Investigation of forming of structural components of iron ore sinter of different basicity under heating
  6. Study of the Strength Characteristics of Agglomerate Depending on its Structure and Phase Composition
  7. The relationship between the composition, structure and metallurgical characteristics of iron ore agglomerates
  8. Fluoroammonium Method for Titanium Slag Processing
  9. Analysis of the Influence of the Degree of Reduction of Iron Ore Materials on the Shape and Location of the Cohesion Zone in a Blast Furnace
  10. The Role of Basicity in the Formation of the Structure and Properties of Iron Ore Agglomerates
  11. Influence of structure of burned pellets on strength and destruction in static compression tests
  12. A mathematical model of metallization of titanium-magnetite ores of Kachkanar deposit in Midrex shaft furnace
  13. Fluorammonium method of titanium slag processing
  14. Processing of Agglomerates and Pellets Containing Various Amounts of Titanium Dioxide
  15. Physical-Chemical and Pyrometallurgical Estimation of Processing of Complex Ores with Extraction of Iron, Vanadium, Titanium
  16. Quality improvement of magnetite concentrate in separate processing of different iron ore types and varieties
  17. Pyrometallurgical processing of high-titaniferous ores.
  18. Study of the main metallurgical characteristics of iron ore raw materials (sinter and pellets)
  19. Perfection of sinter, coke and blast furnace production by application of digital technologies within the frame of “Industry 4.0” concept
  20. Features of the Reducibility of Titanomagnetite Iron Ore Materials
  21. Structure Sensitive Properties of System B<sub>2</sub>O<sub>3</sub>- CaO Melts
  22. Comprehensive solving tasks of deep processing of titanium-magnetite ores
  23. Estimation of indices of BF heat of titanium-magnetite concentrates with different titanium dioxide content
  24. Reduction Roasting of Titaniferous Ores
  25. Research of Titaniferous Ores Melting and Properties of Cast Iron and Slag
  26. ПЕРЕРАБОТКА ТИТАНСОДЕРЖАЩИХ РУД С ИЗВЛЕЧЕНИЕМ ЖЕЛЕЗА, ВАНАДИЯ, ТИТАНА
  27. Comparative technological analysis of control systems of blast furnace hearth lining deterioration
  28. Search for new high Tc superconductors and unusual irreversible magnetic behaviour in three unrelated materials
  29. Processing of Pigmentary Titanium Dioxide from Titaniferous Minerals
  30. Development and Introduction of Monitoring System of Refractory Lining Wear in Blast Furnace Hearth
  31. Change in Oxidizing and Reduction Roasting of Complex Iron-Titanium Ores
  32. The Association of Various Approaches to the Monitoring of Lining Condition in the Blast Furnace Hearth
  33. The physicochemical bases of the pyrometallurgical processing of the titanomagnetite ores
  34. Physicochemical and Thermophysical Bases of Titanomagnetite Ore Treatment
  35. Processing of Titaniferous Magnetite Ores with the Various Titanium Dioxide Content
  36. The Oxidizing Roasting and Reducing Melting of Titaniferous and Conversion Iron Ores
  37. The Thermophysical Bases of Monitoring of the Fireproof Lining Wear in the Blast Furnace Hearth
  38. ANALYTICAL STUDY OF QUALITY INFLUENCE OF TITANOMAGNETITE RAW MATERIALS ON BLAST FURNACE INDICATORS
  39. The Reduction Processes of the Titanium Containing Iron Ores Treatment
  40. Separate processing of ore at Gusevogorsky deposit
  41. Blast furnace smelting
  42. The Determination of Thermocouples Optimum Number in the Blast Furnace Hearth for Control of its Condition
  43. The Estimation of the Thermal Properties of Refractory Materials According to the Temperatures Acceleration Curve at the Blast Furnace Blowing-In
  44. Development of Metallurgical Processing Technology the Titanomagnetite Concentrate of the Tebinbulak Deposit
  45. New Monitoring System of the Refractory Lining Wear in the Blast Furnace Hearth
  46. Monitoring the wear of the refractory lining in the blast-furnace hearth
  47. New Monitoring System of Firebrick Lining Deterioration of Blast Furnace Devil in Metallurgical Plants of China
  48. The Characteristic of Ores and Concentrates of the Open Society "EVRAZ KGOK"
  49. Time Series Prediction of Morbidity Using Artificial Neural Networks
  50. Effect of Mechanical Activation on the Electrochemical Behavior of MnO2
  51. The Reducibility of the Iron Ore Materials as Instrument of the Coke Consumption Decrease in the Blast Furnace Smelting
  52. Influence of Iron Ore Materials Softening Interval on Cohesive Zone Location and Form in Blast Furnace
  53. Iron Ore Materials and Coke Quality Characteristics and Quantitative Indicators of Blast Furnace Smelting
  54. Monitoring System of Firebrick Lining Erosion of Blast Furnace Hearth
  55. Methodical Basis of Investigation of Influence of the Iron Ore Materials and Coke Metallurgical Characteristics on the Blast Furnace Smelting Efficiency
  56. The Coke and Iron Ore Materials Kinetic Characteristics and Quantitative Indicators of Blast Furnace Process
  57. Mathemathical Model of Powder Sintering with Nano- and Microadditives
  58. Mathematical Model of Forecasting the Iron Ore Materials and Coke Quality Indicators
  59. Influence of Elements Oxides Microadditives with Major Cationic Radius on Properties of Silicate Bundle
  60. Mathematical Model of Forecasting the Coke Quality Indicators
  61. Mathematical Model of Homogenization Process of Alloying Elements in Binary Metal Nanosystems
  62. Pyrometallurgical Technology for Processing Titanomagnetites from the Tebinbulak Deposit
  63. The Use of Neural-Network-Based Technologies to Analyze the Effect of a Combination Blast on Blast-Furnace Performance Indices
  64. Geophysical aspects of anomalous phenomena and global ecology
  65. The correcting role of unusual heliocentric atmospheric phenomena