All Stories

  1. Multi-nanoprecipitate strengthened aluminium-scandium alloy for additive manufacturing
  2. The role of physical metallurgical relationships in enhancing alloy properties prediction and design: A case study on Q&P steel
  3. Enabling Invar to Ti6Al4V transitions through copper in functionally graded laser powder bed fused components
  4. Genetic design of precipitation-hardening stainless steels for additive manufacturing
  5. Design method of immiscible dissimilar welding (Mg/Fe) based on CALPHAD and thermodynamic modelling
  6. Revealing microstructural evolution and mechanical properties of resistance spot welded NiTi-stainless steel with Ni or Nb interlayer
  7. Wear and Contact Fatigue Properties of a Novel Lubricant Additive
  8. The origin of microstructural alterations in M50 bearing steel undergoing rolling contact fatigue
  9. Strain hardening in twinning-induced plasticity stainless steel produced by laser powder bed fusion
  10. High entropy alloy strengthening modelling
  11. Hydrogen-accelerated white etching area formation in bearings under rolling contact fatigue
  12. Modelling stress relaxation after hot deformation: Microstructure-property relationships in Nb-bearing steels
  13. Facile route to implement transformation strengthening in titanium alloys
  14. An Industrial Approach to High Strain Rate Testing
  15. Deformation twinning-induced dynamic recrystallization during laser powder bed fusion
  16. Advanced Electron Microscopy: Progress and Application of Electron Backscatter Diffraction
  17. Approaches to Model Structural and Contact Fatigue
  18. Hydrogen Resistant Ferritic and Martensitic Steels. Part I: The Origin of Embrittlement
  19. Hydrogen Resistant Ferritic and Martensitic Steels. Part II: Design Strategies
  20. Introduction – Predictive Modeling and Advanced Characterization
  21. Microscopy Techniques for Additive Manufacturing
  22. Modeling Solidification From Ingots to Additive Manufacturing
  23. Neutron Diffraction
  24. Hydrogen embrittlement mechanisms in advanced high strength steel
  25. Strengthening control in laser powder bed fusion of austenitic stainless steels via grain boundary engineering
  26. Discovery of marageing steels: machine learning vs. physical metallurgical modelling
  27. Martensite formation in titanium alloys: Crystallographic and compositional effects
  28. Alloy design by tailoring phase stability in commercial Ti alloys
  29. Hydrogen embrittlement through the formation of low-energy dislocation nanostructures in nanoprecipitation-strengthened steels
  30. Grain refinement in laser powder bed fusion: The influence of dynamic recrystallization and recovery
  31. Composition and process parameter dependence of yield strength in laser powder bed fusion alloys
  32. Quantification of hydrogen trapping in multiphase steels: Part II – Effect of austenite morphology
  33. Controlling crack formation and porosity in laser powder bed fusion: Alloy design and process optimisation
  34. Quantification of hydrogen trapping in multiphase steels: Part I – Point traps in martensite
  35. Rolling Contact Fatigue Transformations in Aero Steels: The Effect of Temperature on Microstructural Decay
  36. Hydrogen-assisted microcrack formation in bearing steels under rolling contact fatigue
  37. Hydrogen embrittlement in super duplex stainless steels
  38. Microstructural evolution and strain-hardening in TWIP Ti alloys
  39. The relationship between 100Cr6 steelmaking, inclusion microstructure and rolling contact fatigue performance
  40. Defect Prevention in Selective Laser Melting Components: Compositional and Process Effects
  41. Modelling martensitic transformation in titanium alloys: The influence of temperature and deformation
  42. Modelling strengthening mechanisms in beta-type Ti alloys
  43. Evolution of White Etching Bands in 100Cr6 Bearing Steel under Rolling Contact-Fatigue
  44. Microstructural influence on hydrogen permeation and trapping in steels
  45. A microstructure sensitive model for deformation of Ti-6Al-4V describing Cast-and-Wrought and Additive Manufacturing morphologies
  46. Grain boundary carbides as hydrogen diffusion barrier in a Fe-Ni alloy: A thermal desorption and modelling study
  47. Computational design of light and strong high entropy alloys (HEA): Obtainment of an extremely high specific solid solution hardening
  48. Strengthening mechanisms in high-entropy alloys: Perspectives for alloy design
  49. A unified theory for microstructural alterations in bearing steels under rolling contact fatigue
  50. Correlation between vanadium carbide size and hydrogen trapping in ferritic steel
  51. Evolutionary design of strong and stable high entropy alloys using multi-objective optimisation based on physical models, statistics and thermodynamics
  52. Understanding the factors controlling rolling contact fatigue damage in VIM-VAR M50 steel
  53. Stability of retained austenite in martensitic high carbon steels. Part I: Thermal stability
  54. Stability of retained austenite in martensitic high carbon steels. Part II: Mechanical stability
  55. Correlative atomic scale characterisation of secondary carbides in M50 bearing steel
  56. Hydrogen transport in metals: Integration of permeation, thermal desorption and degassing
  57. In-Depth Comparison of Powder and Ingot Metallurgical M50 Bearing Steels
  58. Towards efficient microstructural design and hardness prediction of bearing steels — An integrated experimental and numerical study
  59. Strain-induced martensite decay in bearing steels under rolling contact fatigue: Modelling and atomic-scale characterisation
  60. The correlation between ZDDP tribofilm morphology and the microstructure of steel
  61. Simulation and Modeling in High Entropy Alloys
  62. Modelling recovery kinetics in high-strength martensitic steels
  63. Understanding martensite and twin formation in austenitic steels: A model describing TRIP and TWIP effects
  64. Modelling and characterisation of stress-induced carbide precipitation in bearing steels under rolling contact fatigue
  65. Designing high entropy alloys employing thermodynamics and Gaussian process statistical analysis
  66. Damage evolution around primary carbides under rolling contact fatigue in VIM–VAR M50
  67. Predicting microstructure and strength of maraging steels: Elemental optimisation
  68. Modelling hydrogen migration and trapping in steels
  69. Dynamic recrystallisation model in precipitation-hardened superalloys as a tool for the joint design of alloys and forming processes
  70. Tribochemistry of bearing steels: A new AFM method to study the material–tribofilm correlation
  71. A criterion for the formation of high entropy alloys based on lattice distortion
  72. Hydrogen embrittlement in bearing steels
  73. Formation of oxide under rolling contact fatigue
  74. Understanding the factors controlling the hardness in martensitic steels
  75. A model for the microstructure behaviour and strength evolution in lath martensite
  76. Interatomic spacing distribution in multicomponent alloys
  77. Describing the deformation behaviour of TRIP and dual phase steels employing an irreversible thermodynamics formulation
  78. Modelling dislocation assisted tempering during rolling contact fatigue in bearing steels
  79. Modelling the influence of austenitisation temperature on hydrogen trapping in Nb containing martensitic steels
  80. Modelling solid solution hardening in high entropy alloys
  81. Modelling and Design of Magnesium and High Entropy Alloys Through Combining Statistical and Physical Models
  82. Modelling of Micro-Segregation in a 1C-1.5Cr Type Bearing Steel
  83. Understanding Microstructural Transitions Occurring Under Rolling Contact Fatigue
  84. Fatigue in martensitic 100Cr6: Relationship between rolling contact fatigue microstructural transitions and repetitive push testing
  85. Engineering grain boundary sliding and cavitation effects in superplastic alloys employing thermodynamics
  86. Understanding the factors influencing yield strength on Mg alloys
  87. Rolling contact fatigue in martensitic 100Cr6: Subsurface hardening and crack formation
  88. Discovery of New Materials and Heat Treatments: Accelerated Metallurgy and the Case of Ferrous and Magnesium Alloys
  89. The influence of silicon in tempered martensite: Understanding the microstructure–properties relationship in 0.5–0.6wt.% C steels
  90. Thermostastitical modelling of deformation twinning in HCP metals
  91. Grain size evolution during discontinuous dynamic recrystallization
  92. Modelling and design of stress-induced martensite formation in metastable
  93. A thermostatistical theory for solid solution effects in the hot deformation of alloys: an application to low-alloy steels
  94. Erratum: Rolling contact fatigue in bearings: multiscale overview
  95. Computational design of nanostructured steels employing irreversible thermodynamics
  96. Solute redistribution in the nanocrystalline structure formed in bearing steels
  97. The effect of silicon on the nanoprecipitation of cementite
  98. Thermostatistical modelling of hot deformation in FCC metals
  99. Unravelling the materials genome: Symmetry relationships in alloy properties
  100. Interrupted ageing in steels: Hardness improvement and microstructural stabilization
  101. Hydrogen-Trapping Mechanisms in Nanostructured Steels
  102. Unveiling the nature of hydrogen embrittlement in bearing steels employing a new technique
  103. Combinatorial optimization of carbide-free bainitic nanostructures
  104. Modelling Dynamic Recrystallization in FCC Metals Employing Thermostatistics
  105. Tailoring Dynamic Recrystallization in Ni- and Fe-Base High Temperature Alloys
  106. Strenth/Elongation Optimisation in Alloys: A Case for Accelerated Metallurgy Research
  107. Symmetry in Material Property Relationships: A Tool for the Discovery of New Alloys
  108. Carbide dissolution in bearing steels
  109. Developing bearing steels combining hydrogen resistance and improved hardness
  110. Modelling plastic deformation in BCC metals: Dynamic recovery and cell formation effects
  111. Modelling multiscale plasticity: A thermostatistical approach
  112. Rolling Contact Fatigue in Bearings: Phenomenology and Modelling Techniques
  113. A thermodynamic theory for dislocation cell formation and misorientation in metals
  114. A thermostatistical theory of low and high temperature deformation in metals
  115. On material flow and aspects of structural modification during direct and indirect extrusion of aluminium alloy
  116. Dislocation annihilation in plastic deformation: II. Kocks–Mecking Analysis
  117. Dislocation annihilation in plastic deformation: I. Multiscale irreversible thermodynamics
  118. The ϵ→η→θ transition in 100Cr6 and its effect on mechanical properties
  119. Distortion in 100Cr6 and nanostructured bainite
  120. Rolling contact fatigue in bearings: Multiscale overview
  121. Nanoprecipitation in bearing steels
  122. Predicting the evolution of dislocation density following hot deformation
  123. First-Principles and Genetic Modelling of Precipitation Sequences in Aluminium Alloys
  124. Thermomechanical Processing Design of Nanoprecipitate Strengthened Alloys Employing Genetic Algorithms
  125. Heat Treatment and Composition Optimization of Nanoprecipitation Hardened Alloys
  126. A new ultrahigh-strength stainless steel strengthened by various coexisting nanoprecipitates
  127. Genetic design and characterization of novel ultra-high-strength stainless steels strengthened by Ni3Ti intermetallic nanoprecipitates
  128. Design of Titanium Alloys Showing Plasticity Induced Transformation
  129. Genetic Alloy Design of Ultra High Strength Stainless Steels: From Thermodynamics to Quantum Mechanics
  130. Modelling the strength of ultrafine-grained and nanocrystalline fcc metals
  131. Plasticity induced transformation in a metastableβTi-1023 alloy by controlled heat treatments
  132. On the production and properties of novel particulate NiTip/AA2124 metal matrix composites
  133. A systematic study of the effect of interrupted ageing conditions on the strength and toughness development of AA6061
  134. A constitutive model for high strain rate deformation in FCC metals based on irreversible thermodynamics
  135. Predicting the stress–strain behaviour of carbon steels under hot working conditions: An irreversible thermodynamics model
  136. Computational design of UHS maraging stainless steels incorporating composition as well as austenitisation and ageing temperatures as optimisation parameters
  137. Modelling strength and ductility of ultrafine grained BCC and FCC alloys using irreversible thermodynamics
  138. Modelling the steady state deformation stress under various deformation conditions using a single irreversible thermodynamics based formulation
  139. Modelling plastic deformation of metals over a wide range of strain rates using irreversible thermodynamics
  140. On the transformation behaviour of NiTi particulate reinforced AA2124 composites
  141. A combined optimization of alloy composition and aging temperature in designing new UHS precipitation hardenable stainless steels
  142. Prediction of the martensite start temperature for β titanium alloys as a function of composition
  143. THE COMPOSITION AND TEMPERATURE EFFECTS ON THE ULTRA HIGH STRENGTH STAINLESS STEEL DESIGN
  144. Designing nanoprecipitation strengthened UHS stainless steels combining genetic algorithms and thermodynamics
  145. In situ study of austenite formation by dilatometry in a low carbon microalloyed steel
  146. Isothermal martensitic transformation in a 12Cr–9Ni–4Mo–2Cu stainless steel in applied magnetic fields
  147. Self-healing of deformation damage in underaged Al–Cu–Mg alloys
  148. Genetic alloy design based on thermodynamics and kinetics
  149. Micromechanical predictions of TRIP steel behavior as a function of microstructural parameters
  150. Modelling Dynamic Recovery and Recrystallization of Metals by a New Non-Equilibrium Thermodynamics Approach
  151. Modelling and characterization of chi-phase grain boundary precipitation during aging of Fe–Cr–Ni–Mo stainless steel
  152. Modelling Dynamic Recovery and Recrystallization of Metals by a New Non-Equilibrium Thermodynamics Approach
  153. Modelling steady state deformation of fcc metals by non-equilibrium thermodynamics
  154. Positron annihilation spectroscopy as a tool to develop self healing in aluminium alloys
  155. Modelling Deformation Structures in Metals Based on an Entropic Analysis
  156. Modelling Deformation Structures in Metals Based on an Entropic Analysis
  157. A new etching route for revealing the austenite grain boundaries in an 11.4% Cr precipitation hardening semi-austenitic stainless steel
  158. Edge dislocation dipole emission from a blunt crack tip and its morphological effects
  159. Theory for diffusional transformation kinetics: Multicomponent and multiphase systems
  160. Tailoring of Ostwald ripening behaviour in multicomponent Al alloys
  161. Ferrite/Pearlite Band Prevention in Dual Phase and TRIP Steels: Model Development
  162. Assuring Microstructural Homegeniety in Dual Phase and Trip Steels
  163. A Statistical Mechanics Theory of Grain Deformation and Its Prediction of Dynamical Recovery and Recrystallization
  164. A model for ferrite/pearlite band formation and prevention in steels
  165. Precipitate coarsening in multicomponent systems
  166. Theory for growth of needle-shaped particles in multicomponent systems
  167. Growth of needle and plate shaped particles: theory for small supersaturations, maximum velocity hypothesis
  168. Theory for growth of spherical precipitates with capillarity effects