377 results on '"Orlov, V. M."'
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2. Features of Segregation of the Oxide Phase during Sintering of Tantalum Powders with a Large Specific Surface
3. Calcium Vapor Reduction of Tantalum Oxide Compounds
4. Magnesium Vapor Reduction of Niobium Oxide Compounds in the Range 540–680°C
5. Magnesium Vapor Reduction of Tantalum Oxide Compounds in the Temperature Range 540–680°C
6. Synthesis of Niobium and Tantalum Nitrides via Nitridation of Powders during Calcium Reduction of Their Oxide Compounds
7. Production and Physico-Chemical Properties of Calciothermic Zirconium Powder As a Component of Pyrotechnical Compositions
8. Effect of Ta2O5 Precursor Morphology on Characteristics of Magnesiothermic Tantalum Powders
9. Magnesiothermic Preparation of Chromium Powders
10. Calciothermic Reduction of Titanium Oxide Compounds
11. Synthesis of Molybdenum Nitrides
12. Formation of the Pore Structure of Tantalum and Niobium Powders during Magnesiothermic Reduction of Lithium Tantalate and Lithium Niobate
13. Effect of Phosphorus Impurities in Precursors on Characteristics of Magnesiothermic Tungsten Powders
14. Calcium Reduction of Zirconium Oxide Compounds
15. Calcium Vapor Reduction of Group V and VI Metal Oxide Compounds
16. Magnesium Reduction of Niobium Oxide Compounds in the Combustion Regime
17. Electronically Mediated Reactions in Metal Thermal Reduction of Molybdenum and Tungsten Oxide Compounds
18. Niobium Powders of Mesoporous Structure
19. Magnesiothermic Reduction of Mg4Ta2O9 in the Combustion Regime
20. Niobium and Tantalum Powders from Lithium Niobate and Lithium Tantalate Production Waste
21. Properties of Nitrides Prepared by the Ammonolysis of Magnesiothermic Niobium Powders
22. Тромботична тромбоцитопенічна пурпура (хвороба мошковіца), складність діагностики. Опис клінічних випадків
23. Influence of the composition of precursors and reduction conditions on the properties of magnesiothermic molybdenum powders
24. X-ray diffraction study of magnesiothermic tantalum powders
25. Ammonolysis of magnesiothermic tantalum powders
26. Tantalum powders with a mesoporous structure
27. Preparation of tantalum powders by the reduction of complex oxyfluoride compounds with sodium
28. Influence of the chemical composition of precursors and reduction conditions on the properties of magnesiothermic tungsten powders
29. Influence of the precursor composition and the reduction conditions on the characteristics of magnesium-thermic niobium powders
30. Magnesiothermic reduction of tungsten and molybdenum oxide compounds
31. Magnesium-vapor reduction of niobium oxide compounds
32. Electroless plating of Nb—Ni coatings from salt melt
33. Production of tantalum powders by the magnesium reduction of tantalates
34. Thermodynamic modeling of the magnesiothermic reduction of magnesium and lithium tantalates
35. Preparation of tantalum powders via the sodium reduction of potassium heptafluorotantalate heat-treated in air
36. Magnesium reduction of tantalum oxide compounds
37. Effect of the conditions of sintering of sodium-reduced tantalum powders on their characteristics
38. Production and Physico-Chemical Properties of Calcium-Thermal Zirconium Powder as a Component of Pyrotechnical Compositions
39. Deoxidation of the tantalum powder produced by self-propagating high-temperature synthesis
40. Effect of tantalum capacitor powder preparation conditions on the dielectric loss tangent of anodes
41. X-ray diffraction study of sodium metal reduction tantalum powders
42. Extravesical reimplantation of an extravesical-ectopic ureter from the upper pole of a duplicated kidney
43. Leaching of manganese dioxide from porous bodies
44. Preparation of high-purity tantalum powders by sodium-thermal reduction
45. Sodium-reduced tantalum powders produced from plumbomicrolite raw materials
46. Antifrictional nanocomposites based on chemically modified UHMWPE. Part 3. Comparison of modification effect of compatibilizers on mechanical and tribotechnical properties
47. Antifrictional composites based on chemically modified UHMWPE. Part 2. The effect of nanofillers on the mechanical and triboengineering properties of chemically modified UHMWPE
48. Antifriction nanocomposites based on chemically modified UHMWPE. Part 1. Mechanical and tribological properties of chemically modified UHMWPE
49. Dependence of characteristics of tantalum powders on the type of the extractant used in preparation of raw material
50. Studies and developments of the Institute of Chemistry and Technology of Rare Elements and Mineral Resources of the Kola Research Center, Russian Academy of Sciences, in the field of materials science for the solution of special technical problems
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