International audienceThe microstructure and texture evolution of Fe-33Mn-3Si-3Al twinning induced plasticity (TWIP) steel were studied by the scanning electron microscope (SEM) and X-ray diffraction (XRD) at room temperature. After quasi-static tensile, the texture evolution of different strain was observed. It was shown that the Goss and Brass components increased within the strain range of less than 0.6. Whereas, the main components were decreased when the strain levels were greater than 0.6. This behavior was attributed to the low stacking fault energy (SFE) and was related to the strain energy of this high manganese steel. At high strain levels, the high strain energy may contribute to the Brass components transition to the A (rot-Bras...
The influence of strain rate on the twinning behaviour and microstructure of an Fe–15Mn–2Al–2Si–0.7C...
International audienceA 22 Mn-0.6 C twinning induced plasticity steel with an average grain size of ...
The quantitative contribution of twinning to hardening behavior and its effect on crystal orientatio...
The mechanical behavior of high manganese TWIP (Twinning Induced Plasticity) steels is characterized...
A fully austenitic TWIP steel was cold rolled. During cold rolling, the evolution of the crystallogr...
The microstructural and texture evolution of cold rolled low stacking fault energy fcc Fe-30Mn-3Al-3...
Microstructural evolution of an Fe-22 pct Mn-0.4 pct C twinning-induced plasticity (TWIP) steel duri...
In the present work, deformation mechanisms have been studied by evaluating texture and microstructu...
Due to their outstanding mechanical properties high-manganese TWinning-Induced Plasticity (TWIP) ste...
The evolution of texture and microstructure has been studied up to very large strains (epsilon(t) ap...
The evolution of texture and microstructure has been studied up to very large strains (epsilon(t) ap...
In the present study, microstructure and texture evolution in an austenitic Fe-28 wt pct Mn-0.28 wt...
The influence of rolling at 77 K and 293 K to a true strain of 2.66 on the microstructure and textur...
Fe-17.8Mn-0.52C-0.5Al TWIP steel has been investigated under high-strain rate conditions. Twinning a...
The deformation mechanisms and mechanical properties of Fe-Mn-C-Al twinning-induced plasticity (TWIP...
The influence of strain rate on the twinning behaviour and microstructure of an Fe–15Mn–2Al–2Si–0.7C...
International audienceA 22 Mn-0.6 C twinning induced plasticity steel with an average grain size of ...
The quantitative contribution of twinning to hardening behavior and its effect on crystal orientatio...
The mechanical behavior of high manganese TWIP (Twinning Induced Plasticity) steels is characterized...
A fully austenitic TWIP steel was cold rolled. During cold rolling, the evolution of the crystallogr...
The microstructural and texture evolution of cold rolled low stacking fault energy fcc Fe-30Mn-3Al-3...
Microstructural evolution of an Fe-22 pct Mn-0.4 pct C twinning-induced plasticity (TWIP) steel duri...
In the present work, deformation mechanisms have been studied by evaluating texture and microstructu...
Due to their outstanding mechanical properties high-manganese TWinning-Induced Plasticity (TWIP) ste...
The evolution of texture and microstructure has been studied up to very large strains (epsilon(t) ap...
The evolution of texture and microstructure has been studied up to very large strains (epsilon(t) ap...
In the present study, microstructure and texture evolution in an austenitic Fe-28 wt pct Mn-0.28 wt...
The influence of rolling at 77 K and 293 K to a true strain of 2.66 on the microstructure and textur...
Fe-17.8Mn-0.52C-0.5Al TWIP steel has been investigated under high-strain rate conditions. Twinning a...
The deformation mechanisms and mechanical properties of Fe-Mn-C-Al twinning-induced plasticity (TWIP...
The influence of strain rate on the twinning behaviour and microstructure of an Fe–15Mn–2Al–2Si–0.7C...
International audienceA 22 Mn-0.6 C twinning induced plasticity steel with an average grain size of ...
The quantitative contribution of twinning to hardening behavior and its effect on crystal orientatio...