All Stories

  1. Metallographic, structural, and mechanical characterization of a low-density austenitic Fe-27Mn–8.5Al-1C steel microalloyed with Nb in as-cast condition
  2. Metallographic, structural and mechanical characterization of welded plates of an austenitic Fe-31Mn-8Al-1.9C low-density steel
  3. Microstructural and mechanical evolution of duplex Fe–Mn–Al–C LD steels.
  4. Microstructural characterization of welded plates of austenitic low-density Fe-Mn-Al-C steels
  5. Microstructural and mechanical behavior of austenitic and duplex low-density steels microalloyed
  6. Metallographic, structural and mechanical characterization of a low-density austenitic steel
  7. Computational simulation of thermo-mechanical field and fluid flow in TWIP steel welds
  8. Influence of Microalloying Additions (Nb, Ti, Ti/B, V and Mo) on the Microstructure of TWIP Steels
  9. Single scratch abrasive wear resistance of a 12%CR–3%C white iron alloyed with different titanium amounts
  10. Microstructure and Mechanical Behavior of Weld Nuggets in Ti/B and Ce/La Bearing Low-Density Steels
  11. Characterization of the Gas Tungsten Arc Welding (GTAW) joint of Armco iron nanostructured by Equal-Channel Angular Pressing (ECAP)
  12. Effect of amount and distribution of primary TiC on the wear behavior of a 12%Cr–3%C white iron under dry sliding conditions’
  13. Vanadium Additions to a High-Cr White Iron and its Effects on the Abrasive Wear Behavior.
  14. FE thermo-mechanical simulation of welding residual stresses and distortion in Ti-containing TWIP steel through GTAW process
  15. Characterization of inclusions and second-phase particles in high-Mn TWIP steels microalloyed
  16. Thermo-mechanical-microstructural simulation of double-pass welding process in a TWIP steel by FE formulation and probabilistic model
  17. Microstructural modification of a static and dynamically solidified high chromium white cast iron alloyed with vanadium
  18. Microstructural and Mechanical Characterization of Ti‐Containing Twinning‐Induced Plasticity Steel Welded Joint Produced by Gas Tungsten Arc Welding Process
  19. The role of chromium during austempering of ductile iron
  20. Niobium Additions to a 15%Cr–3%C White Iron and Its Effects on the Microstructure
  21. Effect of Retained Austenite and Non-Metallic Inclusions on the Mechanical Properties of Resistance Spot Welding Nuggets of Low-Alloy TRIP Steels
  22. Improved thermal FE numerical model/DoE based on the Taguchi method to estimate weld penetration/energy and non-metallic inclusions: a case study in Ti-containing TWIP steel butt joints
  23. Role of Titanium, Carbon, Boron, and Zirconium in Carbide and Porosity Formation during Equiaxed Solidification of Nickel-Based Superalloys
  24. TEM Characterization and HR Modeling of Second‐Phase Particles of TWIP Steels
  25. Two-dimensional Monte Carlo–Voronoi simulation of grain growth and nucleation in the heat affected zone of TWIP-Ti welds
  26. Quantitative metallographic characterization of welding microstructures in Ti-containing TWIP steel by means of image processing analysis
  27. Effect of retained austenite and nonmetallic inclusions on the thermal/electrical properties and resistance spot welding nuggets of Si-containing TRIP steels
  28. Effect of the simultaneous Ti and W addition on the microstructure and wear behavior of a high chromium white cast iron
  29. Metallographic, structural and mechanical characterization of low-density austenitic Fe-Mn-Al-C steels microalloyed with Ti/B and Ce/La in hot-rolling condition
  30. Heat Input Effect on the Microstructure of Twinning-Induced Plasticity (TWIP) Steel Welded Joints Through the GTAW Process
  31. Experimental and FEM study of Ti-containing TWIP steel weldability
  32. Comparative study on weldability of Ti-containing TWIP and AISI 304L austenitic steels through the autogenous-GTAW process
  33. Characterization of resistance spot welded transformation induced plasticity (TRIP) steels with different silicon and carbon contents
  34. Microstructural and Mechanical Characterization of Autogenous GTAW Weld in High-Manganese Austenitic Steel Ti-Containing with Thermal Analysis
  35. Metallographic, Structural and Mechanical Characterization of a Low Density Fe-Mn-Al-C Steel Microalloyed with Ti/B in As-Cast and Homogenized Conditions
  36. Metallographic, Structural and Mechanical Characterization of REM-Containing Fe-30Mn-8Al-1.8C Low Density Steel in As-Cast Condition
  37. Effects of tungsten on the microstructure and on the abrasive wear behavior of a high-chromium white iron
  38. Effect of Load and Sliding Rate on the Wear Behavior of Ti-Containing TWIP Steel
  39. Weldability of High-Mn Austenitic Twinning-Induced Plasticity (TWIP) Steel Microalloyed with Nb
  40. Wear Resistance under Non-Lubricated Condition of Nb-Containing TWIP Steel
  41. Influence of Nb Microaddition on Microstructure and Texture Evolution in a Fe-21Mn-1.3Al-1.5Si-0.5C TWIP Steel under Uniaxial Hot-Tensile Conditions
  42. Effect of the Heat Input on the Heat Affected Zone in the Austenitic Stainless Steel Welding by the GTAW Process-An Experimental and Computational Analysis
  43. Effect of Copper Additions on Secondary Carbide Precipitation in High Chromium with Cast Iron
  44. Boron effect on the precipitation of secondary carbides during destabilization of a high-chromium white iron
  45. Advanced Ultra-High Strength Steel (A-UHSS): Boron-Containing
  46. Ab Initio Study of Weldability of a High-Manganese Austenitic Twinning-Induced Plasticity (TWIP) Steel Microalloyed with Boron
  47. Determination of Critical Stress for Dynamic Recrystallization of a High-Mn Austenitic TWIP Steel
  48. Metallographic Characterization of a Ti-Containing Low-Density Fe-Mn-Al-C Steel in As-Cast Condition
  49. Effect of Ti Microaddition on Cavitation Behavior of Fe-22Mn-1.5Al-1.3Si-0.5C Austenitic TWIP Steel
  50. Effect of Ti and B microadditions on the hot ductility behavior of a High-Mn austenitic Fe–23Mn–1.5Al–1.3Si–0.5C TWIP steel
  51. Effects of boron addition and austempering time on microstructure, hardness and tensile properties of ductile irons
  52. Modeling the hot flow behavior of a Fe–22Mn–0.41C–1.6Al–1.4Si TWIP steel microalloyed with Ti, V and Nb
  53. Abrasive wear of V–Nb–Ti alloyed high-chromium white irons
  54. Sliding wear behavior of austempered ductile iron microalloyed with boron
  55. Microstructure and Crystallographic Texture Development of Microalloyed Twinning Induced Plasticity (TWIP) Steels Under Uniaxial Hot-Tensile Conditions
  56. Dry Sliding Wear Behavior of a High-Mn Austenitic Twinning Induced Plasticity (TWIP) Steel Microalloyed with Ti
  57. Influence of Boron on the Precipitation Kinetics in Advanced Ultra-High Strength Steels
  58. Boron Effect on the Softening Parameter (Ω) of Advanced Ultra-High Strength Steels (A-UHSS) under Uniaxial Hot-Compression Conditions
  59. Effect of Nb and Mo on the hot ductility behavior of a high-manganese austenitic Fe–21Mn–1.3Al–1.5Si–0.5C TWIP steel
  60. Hot ductility behavior of high-Mn austenitic Fe–22Mn–1.5Al–1.5Si–0.45C TWIP steels microalloyed with Ti and V
  61. Modeling of the hot flow behavior of advanced ultra-high strength steels (A-UHSS) microalloyed with boron
  62. Can Young’s Modulus of Metallic Alloys Change with Plastic Deformation?
  63. Effect of Boron on the Hot Ductility Behavior of a Low Carbon Advanced Ultra-High Strength Steel (A-UHSS)
  64. Sliding wear behavior of a high-Mn austenitic twinning induced plasticity (TWIP) steel microalloyed with Nb
  65. Hot deformation activation energy (QHW) of austenitic Fe–22Mn–1.5Al–1.5Si–0.4C TWIP steels microalloyed with Nb, V, and Ti
  66. Effect of microalloying elements (Nb, V and Ti) on the hot flow behavior of high-Mn austenitic twinning induced plasticity (TWIP) steel
  67. The Role of Silicon in the Solidification of High-Cr Cast Irons
  68. Effect of V on Hot Deformation Characteristics of TWIP Steels
  69. Effect of boron on the continuous cooling transformation kinetics in a low carbon advanced ultra-high strength steel (A-UHSS)
  70. Dynamically recrystallized austenitic grain in a low carbon advanced ultra-high strength steel (A-UHSS) microalloyed with boron under hot deformation conditions
  71. Mechanical properties and microstructure of low carbon ultra-high strength steels (UHSS) microalloyed with boron
  72. Effect of Microalloying Elements (B, Nb, V and Ti) on the Strain Hardening Behavior of High-Manganese TWIP Steels.
  73. Hot ductility behavior of a low carbon advanced high strength steel (AHSS) microalloyed with boron
  74. Determination of the critical conditions for the initiation of dynamic recrystallization in boron microalloyed steels
  75. Effect of boron on microstructure of directionally solidified high chromium white irons
  76. Effect of boron on the sliding wear of directionally solidified high-chromium white irons
  77. High resistance boron treated steels for railway applications
  78. Hot deformation behavior of low carbon advanced high strength steel (AHSS) microalloyed with boron
  79. Modeling of the hot deformation behavior of boron microalloyed steels under uniaxial hot-compression conditions
  80. Hot flow behavior of boron microalloyed steels
  81. The effect of titanium on the wear behaviour of a 16%Cr white cast iron under pure sliding
  82. Hot ductility behavior of boron microalloyed steels
  83. Determination of the Work Hardening Exponent by the Hollomon and Differential Crussard-Jaoul Analyses of Cold Drawn Ferrite-Pearlite Steels
  84. Nanoparticle and Intermetallic Formation in Dissimilar Friction Welds Produced with Silver Interlayers
  85. Effect of rare-earth metals on the hot strength of HSLA steels
  86. Rare Earth Additions in a Ferritic Steel: A Mössbauer Study