A multi-scale characterisation of the crack tip plasticity has been investigated in a fatigue crack propagation under gaseous hydrogen at gas pressure of 35 MPa in a commercially pure iron, Armco iron. The dislocation structure beneath a fracture surface was observed by a Transmission Electron Microscopy(TEM), and the cyclic and monotonic plastic zones were evaluated by an Out-of-Plane Displacement (OPD) measurement. By the TEM observation in a non-accelerated regime (ΔK = 11 MPa×m1/2), a dislocation cell structure was observed even in the brittle intergranular fracture in hydrogen. This result indicates a certain amount of plastic strain is introduced into the grains in front of an intergranular crack in hydrogen, and this may explain the ...
Elasto-plastic fracture toughness tests of a commercially pure iron were performed in air and in hyd...
The objective of this study is to experimentally characterize Hydrogen-Affected Fatigue Crack Growth...
The objective of this study is to experimentally characterize Hydrogen-Affected Fatigue Crack Growth...
In order to study the influence of hydrogen on plastic deformation behavior in the vicinity of the f...
In order to study the influence of hydrogen on plastic deformation behavior in the vicinity of the f...
In order to study the influence of hydrogen on plastic deformation behavior in the vicinity of the f...
Hydrogen effect on fatigue performance of commercially pure BCC iron has been studied with a combina...
A new model for hydrogen-assisted fatigue crack growth (HAFCG) in BCC iron under a gaseous hydrogen ...
A new model for hydrogen-assisted fatigue crack growth (HAFCG) in BCC iron under a gaseous hydrogen ...
The role of hydrogen on intergranular (IG) fracture in hydrogen-assisted fatigue crack growth (HAFCG...
The role of hydrogen on intergranular (IG) fracture in hydrogen-assisted fatigue crack growth (HAFCG...
The role of hydrogen on intergranular (IG) fracture in hydrogen-assisted fatigue crack growth (HAFCG...
Hydrogen effect on fatigue performance at relatively high values of stress intensity factor range, Δ...
Hydrogen effect on fatigue performance at relatively high values of stress intensity factor range, Δ...
Hydrogen effect on fatigue performance at relatively high values of stress intensity factor range, Δ...
Elasto-plastic fracture toughness tests of a commercially pure iron were performed in air and in hyd...
The objective of this study is to experimentally characterize Hydrogen-Affected Fatigue Crack Growth...
The objective of this study is to experimentally characterize Hydrogen-Affected Fatigue Crack Growth...
In order to study the influence of hydrogen on plastic deformation behavior in the vicinity of the f...
In order to study the influence of hydrogen on plastic deformation behavior in the vicinity of the f...
In order to study the influence of hydrogen on plastic deformation behavior in the vicinity of the f...
Hydrogen effect on fatigue performance of commercially pure BCC iron has been studied with a combina...
A new model for hydrogen-assisted fatigue crack growth (HAFCG) in BCC iron under a gaseous hydrogen ...
A new model for hydrogen-assisted fatigue crack growth (HAFCG) in BCC iron under a gaseous hydrogen ...
The role of hydrogen on intergranular (IG) fracture in hydrogen-assisted fatigue crack growth (HAFCG...
The role of hydrogen on intergranular (IG) fracture in hydrogen-assisted fatigue crack growth (HAFCG...
The role of hydrogen on intergranular (IG) fracture in hydrogen-assisted fatigue crack growth (HAFCG...
Hydrogen effect on fatigue performance at relatively high values of stress intensity factor range, Δ...
Hydrogen effect on fatigue performance at relatively high values of stress intensity factor range, Δ...
Hydrogen effect on fatigue performance at relatively high values of stress intensity factor range, Δ...
Elasto-plastic fracture toughness tests of a commercially pure iron were performed in air and in hyd...
The objective of this study is to experimentally characterize Hydrogen-Affected Fatigue Crack Growth...
The objective of this study is to experimentally characterize Hydrogen-Affected Fatigue Crack Growth...