In this study, we focused on the dynamics of the continuously changing microstructure at an elevated temperature upon tempering of stainless steel. We used a Scanning Electron Microscope (SEM) with an Electron Backscatter Diffraction (EBSD) setup in combination with a High Temperature specimen stage to perform in-situ orientation imaging microscopy experiments. This experimental setup allowed us to observe in-situ the microstructural changes like grain growth, grain-boundary movement and modification in crystal orientations. By subsequent imaging of the outer surface area, the evolution of the microstructure can be examined leading to a better understanding of the dynamics of the tempering process of stainless steel. In particular, we discu...
This paper presents an investigation into high temperature imaging of metals through the use of a no...
International audienceIn-situ Electron BackScatter Diffraction (EBSD) was used to study the thermal ...
This research utilises a novel heat stage combined with a Zeiss scanning electron microscope to inve...
In this study, we focused on the dynamics of the continuously changing microstructure at an elevated...
This thesis presents an investigation into high-temperature imaging of metals and alloys using a nov...
Microstructural evolution during compressive deformation of a meta-stable austenitic stainless steel...
The microstructural evolution of a 304 H austenitic stainless steel subjected to hot compression was...
The microstructural evolution of deformed 304L stainless steel during static recrystallization and g...
The evolution of crystallographic texture and deformation substructure was studied in a type 316L au...
Electron BackScatter Diffraction (EBSD) in conjunction with Field-Emission Environmental Scanning El...
This thesis presents the results of a project to investigate the growth of grains and movement of gr...
Plastic deformation of surface grains has been observed by electron backscatter diffraction techniqu...
The transformation mechanism of reverted austenite and the amount of reverted austenite during the t...
Electron BackScatter Diffraction (EBSD) in conjunction with Field-Emission Environmental Scanning El...
International audienceIn-situ Electron BackScatter Diffraction (EBSD) was used to study the thermal ...
This paper presents an investigation into high temperature imaging of metals through the use of a no...
International audienceIn-situ Electron BackScatter Diffraction (EBSD) was used to study the thermal ...
This research utilises a novel heat stage combined with a Zeiss scanning electron microscope to inve...
In this study, we focused on the dynamics of the continuously changing microstructure at an elevated...
This thesis presents an investigation into high-temperature imaging of metals and alloys using a nov...
Microstructural evolution during compressive deformation of a meta-stable austenitic stainless steel...
The microstructural evolution of a 304 H austenitic stainless steel subjected to hot compression was...
The microstructural evolution of deformed 304L stainless steel during static recrystallization and g...
The evolution of crystallographic texture and deformation substructure was studied in a type 316L au...
Electron BackScatter Diffraction (EBSD) in conjunction with Field-Emission Environmental Scanning El...
This thesis presents the results of a project to investigate the growth of grains and movement of gr...
Plastic deformation of surface grains has been observed by electron backscatter diffraction techniqu...
The transformation mechanism of reverted austenite and the amount of reverted austenite during the t...
Electron BackScatter Diffraction (EBSD) in conjunction with Field-Emission Environmental Scanning El...
International audienceIn-situ Electron BackScatter Diffraction (EBSD) was used to study the thermal ...
This paper presents an investigation into high temperature imaging of metals through the use of a no...
International audienceIn-situ Electron BackScatter Diffraction (EBSD) was used to study the thermal ...
This research utilises a novel heat stage combined with a Zeiss scanning electron microscope to inve...