All Stories

  1. Modeling of the initial stages of the formation of heterogeneous plasma flows in the electric explosion of conductors
  2. Structure and properties changes of Al-Si alloy treated by pulsed electron beam
  3. The Analysis of the Influence of Various Factors on the Development of Stress Corrosion Defects in the Main Gas Pipeline Walls in the Conditions of the European Part of the Russian Federation
  4. Research into the Structure of Aluminum Matrix Composite АK12+2.38%Cu+0.06%SiC with a Scanning Probe Microscope
  5. Structure and properties of strengthening layer on Hardox 450 steel
  6. Mathematical Modeling of the Concentrated Energy Flow Effect on Metallic Materials
  7. Mathematical Model of Nanostructure Formation in Binary Alloys at Electron Beam Treatment
  8. Metallographic Examination of Forming Improved Mechanical Properties via Surfacing of Steel HARDOX 450 with Flux Cored Wire
  9. Increase of Fatigue Life of Titanium VT1-0 after Electron Beam Treatment
  10. An increase in fatigue service life of eutectic silumin by electron-beam treatment
  11. Structural and phase states in high-quality rail
  12. Fatigue variation of surface properties of silumin subjected to electron-beam treatment
  13. Influence of hydrogen on the localization of plastic strain in low-carbon steel during electrolytic saturation
  14. Effects of strain rate on the hot deformation behavior and dynamic recrystallization in China low activation martensitic steel
  15. The Influence of Electron Beam Treatment on Al-Si Alloy Structure Destroyed at High-Cycle Fatigue
  16. Mathematical Modelling Stress Distribution in a Metallic Plate with an Asymmetrical Notch
  17. Increase in Reliability of Metal Articles with Impulse Current Effect
  18. Increase in fatigue life of steels by electron-beam processing
  19. Structure-phase states of silumin surface layer after electron beam and high cycle fatigue
  20. Thermocapillary model of formation of surface nanostructure in metals at electron beam treatment
  21. Investigation of defect copper substructure disrupted in creep condition under the action of magnetic field
  22. Fatigue life of silumin irradiated by high intensity pulsed electron beam
  23. Structural evolution of silumin treated with a high-intensity pulse electron beam and subsequent fatigue loading up to failure
  24. Fatigue life of silumin treated with a high-intensity pulsed electron beam
  25. Magnetic Field Effect on Creep of Polycrystalline Copper
  26. Regularities of varying the dislocation substructure of copper under creep in the magnetic field
  27. Steel fatigue life extension by pulsed electron beam irradiation
  28. Increasing the fatigue life of steel and alloys by electron-beam treatment
  29. Fractography of the fatigue fracture surface of silumin irradiated by high-intensity pulsed electron beam
  30. Effect of the magnetic field on the surface morphology of copper upon creep fracture
  31. Evolution of Al–19·4Si alloy surface structure after electron beam treatment and high cycle fatigue
  32. Superior Quality Rails: Structure-Phase States and Defect Substructure
  33. Plastic Deformation Localization of Low Carbon Steel: Hydrogen Effect
  34. Estimation of Current Amplitude Pulse
  35. Dislocation substructures and internal stress fields in bulk- and differentially quenched rails
  36. Structure, Phase Composition, and Defective Substructure of Rails of the Highest Quality Grade
  37. Formation of gradients of structure, phase composition, and dislocation substructure in differentially hardened rails
  38. Structure of low-carbon steel sheet after scale removal
  39. Inhomogeneity of the hot deformation of austenitic steel
  40. Evolution of the structure and phase composition of low-carbon ferrite steel under conditions of hydrogen saturation and deformation
  41. Influence of scale removal on the mechanical properties of low-carbon steel
  42. Analysis of structure and phase composition of rails subjected to differential hardening at different regimes
  43. Evolution of the phase composition and defect substructure in the surface layer of rail steel under fatigue
  44. Evolution of the phase composition and defect substructure of rail steel subjected to high-intensity electron-beam treatment
  45. Increase in the fatigue durability of stainless steel by electron-beam surface treatment
  46. Fatigue failure of stainless steel after electron-beam treatment
  47. Formation of structure-phase states and dislocation substructures during thermomechanical hardening of Fe–0.09C–2Mn–1Si steel
  48. Fatigue and corrosion resistance of bimetals after pulsed surface treatment
  49. Multicyclic fatigue of stainless steel treated by a high-intensity electron beam: surface layer structure
  50. Formation of surface gradient structural-phase states under electron-beam treatment of stainless steel
  51. Gradient structural phase states formed in steel 08Kh18N10T in the course of high-cycle fatigue to failure
  52. Dislocation Substructure Gradient Formation in Aluminum by Creep under Weak Potential
  53. Effect of the electric potential of the aluminum surface on stress relaxation
  54. Effect of an electric potential on the formation of a dislocation structure during creep of aluminum
  55. Gradient Structural-Phase States in the Thermostrengthened Low-Carbon Steel Reinforcement
  56. Effect of the electric potential on the surface tension of iron
  57. Acoustic emission in steel failure
  58. Evolution of dislocation substructures in fatigue loaded and failed stainless steel with the intermediate electropulsing treatment
  59. Ways of the dislocation substructure evolution in austenite steel under low and multicycle fatigue
  60. Formation of stress field gradients during the high cycle fatigue of an austenitic corrosion-resistant steel
  61. On the effect of electric potential on resistance of metals’ surface to microindentation
  62. Formation of structure and mechanical properties in the accelerated cooling of an H beam
  63. Dislocation substructure evolution on Al creep under the action of the weak electric potential
  64. Role of the electric potential in the creep acceleration and formation of Al fracture surface
  65. Influence of contact potential difference and electric potential on the microhardness of metals
  66. Evolution of the dislocation substructure in an annealed pro-eutectoid steel upon irradiation with a high-current electron beam
  67. Change of dislocation substructures upon high-cycle fatigue of stainless steel
  68. Influence of weak energy stimuli on metal creep
  69. Modification of steel surface layer by electron beam treatment
  70. Gradient structure-phase states formed in Hadfield steel during dry sliding wear
  71. Modification of the defect substructure in a quenched steel by a low-energy high-current pulsed electron beam
  72. Nanocrystalline grains and phase composition in the plasma hardening of cast-iron rollers
  73. Evolution of the structure and phase composition of an equiatomic Fe-Co alloy on quenching from the liquid state
  74. Formation of structural-phase states of the surface of Hadfield steel
  75. On the influence of the electrical potential on the creep rate of aluminum
  76. Forming structural-phase states of the surface layer of steel by electron-beam treatment
  77. Structure and hot-rolled reinforcement rods properties evolution in the process of long service life
  78. Control of austenite steel fatigue strength
  79. Macrolocalization of plastic strain in creep of fine-grain aluminum
  80. Modification of the steel 45G17UZ grained structure at the fatigue testing under conditions of electrical stimulation