The dislocation pattern at the tip of a non-propagating fatigue crack in an Fe-25Cr-1N steel (mass%) was characterized by electron channeling contrast imaging. Planar dislocation arrays on two different slip planes were observed at the crack tip. Each planar dislocation array acts as a barrier to the motion of the other planar dislocations on different slip planes, contributing to the enhancement of the resistance to the crack propagation
We describe the use of electron channeling contrast imaging in the scanning electron microscope to r...
We describe the use of electron channeling contrast imaging in the scanning electron microscope to r...
The fatigue crack propagation rate is influenced by various mechanisms at the very vicinity of the c...
The fatigue of copper single crystals, orientated for single slip, has been studied using electron c...
Fatigue of copper single crystals, oriented for single slip, has been studied using electron channel...
The fatigue of copper single crystals, oriented for single slip, was studied using electron channell...
This paper reports on the use of an SEM based diffraction method in the study of some fatigue proble...
For flaw-free smooth copper single crystals, nucleation of fatigue cracks is generally associated wi...
We have investigated the formation of dislocation substructures in high-Mn steels by electron channe...
International audienceThe dislocation structure of copper single crystal during cyclic fatigue has b...
The application of electron channeling contrast imaging (ECCI) technique to the study of polycrystal...
International audienceNon-destructive, comprehensive dislocations characterization in fine grained I...
The forward scattering geometry in the scanning electron microscope enables the acquisition of elect...
This paper briefly reviews development of the electron channelling contrast imaging (ECCI) technique...
A model is proposed that explains the origin of the bright contrast of dislocation walls consisting ...
We describe the use of electron channeling contrast imaging in the scanning electron microscope to r...
We describe the use of electron channeling contrast imaging in the scanning electron microscope to r...
The fatigue crack propagation rate is influenced by various mechanisms at the very vicinity of the c...
The fatigue of copper single crystals, orientated for single slip, has been studied using electron c...
Fatigue of copper single crystals, oriented for single slip, has been studied using electron channel...
The fatigue of copper single crystals, oriented for single slip, was studied using electron channell...
This paper reports on the use of an SEM based diffraction method in the study of some fatigue proble...
For flaw-free smooth copper single crystals, nucleation of fatigue cracks is generally associated wi...
We have investigated the formation of dislocation substructures in high-Mn steels by electron channe...
International audienceThe dislocation structure of copper single crystal during cyclic fatigue has b...
The application of electron channeling contrast imaging (ECCI) technique to the study of polycrystal...
International audienceNon-destructive, comprehensive dislocations characterization in fine grained I...
The forward scattering geometry in the scanning electron microscope enables the acquisition of elect...
This paper briefly reviews development of the electron channelling contrast imaging (ECCI) technique...
A model is proposed that explains the origin of the bright contrast of dislocation walls consisting ...
We describe the use of electron channeling contrast imaging in the scanning electron microscope to r...
We describe the use of electron channeling contrast imaging in the scanning electron microscope to r...
The fatigue crack propagation rate is influenced by various mechanisms at the very vicinity of the c...