All Stories

  1. A COMSOL framework for predicting hydrogen embrittlement, Part II: Phase field fracture
  2. A COMSOL framework for predicting hydrogen embrittlement, Part I: Coupled hydrogen transport
  3. In-silico platform for the multifunctional design of 3D printed conductive components
  4. A computational framework to predict weld integrity and microstructural heterogeneity: Application to hydrogen transmission
  5. Unravelling the interplay between steel rebar corrosion rate and corrosion-induced cracking of reinforced concrete
  6. TDS Simulator: A MATLAB App to model temperature-programmed hydrogen desorption
  7. Influence of dislocation cells on hydrogen embrittlement in wrought and additively manufactured Inconel 718
  8. A nonlinear phase-field model of corrosion with charging kinetics of electric double layer
  9. Ice viscosity governs hydraulic fracture that causes rapid drainage of supraglacial lakes
  10. On the suitability of single-edge notch tension (SENT) testing for assessing hydrogen-assisted cracking susceptibility
  11. Computational predictions of hydrogen-assisted fatigue crack growth
  12. Phase-field simulations opening new horizons in corrosion research
  13. Hydrogen uptake kinetics of cathodic polarized metals in aqueous electrolytes
  14. Influence of concentration-dependent material properties on the fracture and debonding of electrode particles with core–shell structure
  15. Damage Mechanics Challenge: Predictions based on the phase field fracture model
  16. A microstructure-sensitive electro-chemo-mechanical phase-field model of pitting and stress corrosion cracking
  17. Predicting the impact of water transport on carbonation-induced corrosion in variably saturated reinforced concrete
  18. UMAT4COMSOL: An Abaqus user material (UMAT) subroutine wrapper for COMSOL
  19. The role of chemo-mechanical modelling in the development of battery technology—a perspective
  20. Phase field cohesive zone modeling for fatigue crack propagation in quasi-brittle materials
  21. Phase-field chemo-mechanical modelling of corrosion-induced cracking in reinforced concrete subjected to non-uniform chloride-induced corrosion
  22. Computational predictions of weld structural integrity in hydrogen transport pipelines
  23. Fracture of bio-cemented sands
  24. A phase field-based framework for electro-chemo-mechanical fracture: Crack-contained electrolytes, chemical reactions and stabilisation
  25. Corrosion rates under charge-conservation conditions
  26. A micro-mechanics based extension of the GTN continuum model accounting for random void distributions
  27. Hydrogen embrittlement susceptibility of additively manufactured 316L stainless steel: Influence of post-processing, printing direction, temperature and pre-straining
  28. A phase-field chemo-mechanical model for corrosion-induced cracking in reinforced concrete
  29. Biomass dust explosions: CFD simulations and venting experiments in a 1 m3 silo
  30. An FFT-based crystal plasticity phase-field model for micromechanical fatigue cracking based on the stored energy density
  31. Accelerated high-cycle phase field fatigue predictions
  32. Phase-field modeling of pitting and mechanically-assisted corrosion of Mg alloys for biomedical applications
  33. Analysis of hydrogen diffusion in the three stage electro-permeation test
  34. Electro-chemo-mechanical phase field modeling of localized corrosion: theory and COMSOL implementation
  35. A phase field model for high-cycle fatigue: Total-life analysis
  36. Hygroscopic phase field fracture modelling of composite materials
  37. Multielement polynomial chaos Kriging-based metamodelling for Bayesian inference of non-smooth systems
  38. Hydrogen-assisted fatigue crack growth: Pre-charging vs in-situ testing in gaseous environments
  39. Electromechanical phase-field fracture modelling of piezoresistive CNT-based composites
  40. Accelerated Short Circuiting in Anode‐Free Solid‐State Batteries Driven by Local Lithium Depletion
  41. Stabilising Effects of Lumped Integration Schemes for the Simulation of Metal-Electrolyte Reactions
  42. On the relative efficacy of electropermeation and isothermal desorption approaches for measuring hydrogen diffusivity
  43. Direct observations of electrochemically induced intergranular cracking in polycrystalline NMC811 particles
  44. Griffith-based analysis of crack initiation location in a Brazilian test
  45. An electro-chemo-mechanical framework for predicting hydrogen uptake in metals due to aqueous electrolytes
  46. A coupled phase field formulation for modelling fatigue cracking in lithium-ion battery electrode particles
  47. A phase field electro-chemo-mechanical formulation for predicting void evolution at the Li–electrolyte interface in all-solid-state batteries
  48. Cohesive zone modelling of hydrogen assisted fatigue crack growth: The role of trapping
  49. Computational assessment of biomass dust explosions in the 20L sphere
  50. A generalised, multi-phase-field theory for dissolution-driven stress corrosion cracking and hydrogen embrittlement
  51. A stress-based poro-damage phase field model for hydrofracturing of creeping glaciers and ice shelves
  52. A general framework for decomposing the phase field fracture driving force, particularised to a Drucker–Prager failure surface
  53. Computational modelling of hydrogen assisted fracture in polycrystalline materials
  54. Micromechanics-based phase field fracture modelling of CNT composites
  55. Cracking predictions of lithium-ion battery electrodes by X-ray computed tomography and modelling
  56. Phase field fracture predictions of microscopic bridging behaviour of composite materials
  57. Comparison of hydrogen diffusivities measured by electrochemical permeation and temperature-programmed desorption in cold-rolled pure iron
  58. Modelling fatigue crack growth in shape memory alloys
  59. CFD simulations of turbulent dust dispersion in the 20 L vessel using OpenFOAM
  60. A generalised phase field model for fatigue crack growth in elastic–plastic solids with an efficient monolithic solver
  61. A phase field model for hydrogen-assisted fatigue
  62. Mode I and mode II stress intensity factors and dislocation density behaviour in strain gradient plasticity
  63. A mechanism-based gradient damage model for metallic fracture
  64. A mechanism-based multi-trap phase field model for hydrogen assisted fracture
  65. Progress and opportunities in modelling environmentally assisted cracking
  66. An assessment of phase field fracture: crack initiation and growth
  67. A simple and robust Abaqus implementation of the phase field fracture method
  68. A Unified Abaqus Implementation of the Phase Field Fracture Method Using Only a User Material Subroutine
  69. TAFMEC special issue on hydrogen embrittlement of metallic materials: Fatigue and fracture
  70. Mode II fracture of an MMA adhesive layer: Theory versus experiment
  71. Essential work of fracture assessment of acrylonitrile butadiene styrene (ABS) processed via fused filament fabrication additive manufacturing
  72. A phase field formulation for dissolution-driven stress corrosion cracking
  73. Essential work of fracture assessment of acrylonitrile butadiene styrene (ABS) processed via fused filament fabrication additive manufacturing
  74. Phase field predictions of microscopic fracture and R-curve behaviour of fibre-reinforced composites
  75. Crack tip fields and fracture resistance parameters based on strain gradient plasticity
  76. Phase field modelling of fracture and fatigue in Shape Memory Alloys
  77. Applications of phase field fracture in modelling hydrogen assisted failures
  78. Simulation of hydrogen permeation through pure iron for trapping and surface phenomena characterisation
  79. Interaction of void spacing and material size effect on inter-void flow localisation
  80. Fracture in distortion gradient plasticity
  81. Creep behaviour and tensile response of adhesively bonded polyethylene joints: Single-Lap and Double-Strap
  82. A phase field model for elastic-gradient-plastic solids undergoing hydrogen embrittlement
  83. Analysis of the influence of microstructural traps on hydrogen assisted fatigue
  84. Numerical study of interface cracking in composite structures using a novel geometrically nonlinear Linear Elastic Brittle Interface Model: Mixed-mode fracture conditions and application to structured interfaces
  85. Generalised boundary conditions for hydrogen transport at crack tips
  86. Influence of charging conditions on simulated temperature-programmed desorption for hydrogen in metals
  87. Adaptive phase field modelling of crack propagation in orthotropic functionally graded materials
  88. Analysis of hydrogen permeation tests considering two different modelling approaches for grain boundary trapping in iron
  89. Phase field fracture modelling using quasi-Newton methods and a new adaptive step scheme
  90. Mode II Fracture of an Elastic-Plastic Sandwich Layer
  91. On the suitability of slow strain rate tensile testing for assessing hydrogen embrittlement susceptibility
  92. The Essential Work of Fracture parameters for 3D printed polymer sheets
  93. Cold Isostatic Pressing to Improve the Mechanical Performance of Additively Manufactured Metallic Components
  94. Gradient-enhanced statistical analysis of cleavage fracture
  95. Phase field modelling of crack propagation in functionally graded materials
  96. Steady-state fracture toughness of elastic-plastic solids: Isotropic versus kinematic hardening
  97. Pre-notched dog bone small punch specimens for the estimation of fracture properties
  98. The role of plastic strain gradients in the crack growth resistance of metals
  99. Mode I crack tip fields: Strain gradient plasticity theory versus J2 flow theory
  100. On the Finite Element Implementation of Functionally Graded Materials
  101. Crack Growth Resistance in Metallic Alloys: The Role of Isotropic Versus Kinematic Hardening
  102. Size effects in elastic-plastic functionally graded materials
  103. A phase field formulation for hydrogen assisted cracking
  104. Strain Gradient Plasticity-Based Modeling of Damage and Fracture
  105. Non-local plasticity effects on notch fracture mechanics
  106. A cohesive zone framework for environmentally assisted fatigue
  107. Abaqus2Matlab: A suitable tool for finite element post-processing
  108. Gradient plasticity crack tip characterization by means of the extended finite element method
  109. Strain gradient plasticity-based modeling of hydrogen environment assisted cracking
  110. Damage modeling in Small Punch Test specimens
  111. Strain gradient plasticity modeling of hydrogen diffusion to the crack tip
  112. A finite element framework for distortion gradient plasticity with applications to bending of thin foils
  113. On fracture in finite strain gradient plasticity
  114. Fracture toughness characterization through notched small punch test specimens
  115. Modeling damage and fracture within SGP
  116. Numerical analysis of quasi-static fracture in FGMs