The martensitic transformation behaviour of the metastable austenite phase in low-alloyed transformation-induced plasticity (TRIP) steels has been studied in situ using high-energy X-ray diffraction during deformation. The austenite stability during tensile deformation has been evaluated at different length scales. A powder diffraction analysis has been performed to correlate the macroscopic behaviour of the material to the observed changes in the volume phase fraction. Moreover, the austenite deformation response has been studied at the length scale of individual grains, where an in-depth characterization of four selected grains has been performed, including grain volume, local carbon concentration and grain orientation. For the first time...
The phase transformation kinetics of a hot rolled transformation induced plasticity (TRIP) steel is ...
The use of high-energy synchrotron x-rays which has enabled three- dimensional structural characteri...
In-situ tensile deformation tests have been performed on a high Al TRIP steel (composition 0.26 wt. ...
The martensitic transformation behaviour of the metastable austenite phase in low-alloyed transforma...
The martensitic transformation behavior of the meta-stable austenite phase in low alloyed TRIP steel...
The stability of the retained austenite has been studied in situ in low-alloyed transformation-induc...
The stability of individual metastable austenite grains in low-alloyed TRIP steels has been studied ...
The microstructure evolution during shear loading of a low-alloyed TRIP steel with different amounts...
TRIP steel is a material providing great mechanical properties. Such steels show a good balance betw...
Transmission electron microscopy and in situ synchrotron high-energy X-ray diffraction were used to ...
X-ray diffraction analysis, magnetic force microscopy, and the saturation magnetization method have ...
The phase transformation kinetics of a hot rolled transformation induced plasticity (TRIP) steel is ...
The use of high-energy synchrotron x-rays which has enabled three- dimensional structural characteri...
In-situ tensile deformation tests have been performed on a high Al TRIP steel (composition 0.26 wt. ...
The martensitic transformation behaviour of the metastable austenite phase in low-alloyed transforma...
The martensitic transformation behavior of the meta-stable austenite phase in low alloyed TRIP steel...
The stability of the retained austenite has been studied in situ in low-alloyed transformation-induc...
The stability of individual metastable austenite grains in low-alloyed TRIP steels has been studied ...
The microstructure evolution during shear loading of a low-alloyed TRIP steel with different amounts...
TRIP steel is a material providing great mechanical properties. Such steels show a good balance betw...
Transmission electron microscopy and in situ synchrotron high-energy X-ray diffraction were used to ...
X-ray diffraction analysis, magnetic force microscopy, and the saturation magnetization method have ...
The phase transformation kinetics of a hot rolled transformation induced plasticity (TRIP) steel is ...
The use of high-energy synchrotron x-rays which has enabled three- dimensional structural characteri...
In-situ tensile deformation tests have been performed on a high Al TRIP steel (composition 0.26 wt. ...