International audienceA 22 Mn-0.6 C twinning induced plasticity steel with an average grain size of 2.6 μm was deformed in tension at room temperature. The electron backscattered diffraction technique was used to characterize the twinning structure in relation with the local texture evolution. For nanoscale analysis, additional transmission electron microscopy analysis was performed. Nanotwins were activated in the largest grains from the beginning of the deformation. They interacted with a well-developed dislocation structure that induced detectable intragranular orientation variations. With increasing deformation, dense bundles of nanotwins preferentially developed in grains oriented close to the //tensile direction fibre (promoted by the...
International audienceIn-situ tensile tests were carried out on Fe22Mn0.6C and Fe22Mn0.6C3Al (wt. %)...
International audienceIn-situ tensile tests were carried out on Fe22Mn0.6C and Fe22Mn0.6C3Al (wt. %)...
International audienceIn-situ tensile tests were carried out on Fe22Mn0.6C and Fe22Mn0.6C3Al (wt. %)...
The severe plastic deformation of a Twinning Induced Plasticity (TWIP), 0.61C-22.3Mn-0.19Si-0.14Ni-0...
The mechanical behavior of high manganese TWIP (Twinning Induced Plasticity) steels is characterized...
The quantitative contribution of twinning to hardening behavior and its effect on crystal orientatio...
The quantitative contribution of twinning to hardening behavior and its effect on crystal orientatio...
Deformation twinning in coarse-grained fcc metals results from the highly coordinated glide of Shock...
Abstract The successive evolution of martensitic transformation, twining and dislocation substructu...
The effect of cold rolling on the microstructure evolution and mechanical properties of Fe-₂₃Mn-₀.₃....
We present an investigation of the effect of deformation twinning on the visco-plastic response and ...
The microstructure of a Fe-Mn-Si-Al twinning-induced plasticity (TWIP) steel exhibiting remarkable w...
Advanced high-strength steels as Twinning Induced Plasticity (TWIP) steels have been developed using...
International audienceIn-situ tensile tests were carried out on Fe22Mn0.6C and Fe22Mn0.6C3Al (wt. %)...
International audienceIn-situ tensile tests were carried out on Fe22Mn0.6C and Fe22Mn0.6C3Al (wt. %)...
International audienceIn-situ tensile tests were carried out on Fe22Mn0.6C and Fe22Mn0.6C3Al (wt. %)...
International audienceIn-situ tensile tests were carried out on Fe22Mn0.6C and Fe22Mn0.6C3Al (wt. %)...
International audienceIn-situ tensile tests were carried out on Fe22Mn0.6C and Fe22Mn0.6C3Al (wt. %)...
The severe plastic deformation of a Twinning Induced Plasticity (TWIP), 0.61C-22.3Mn-0.19Si-0.14Ni-0...
The mechanical behavior of high manganese TWIP (Twinning Induced Plasticity) steels is characterized...
The quantitative contribution of twinning to hardening behavior and its effect on crystal orientatio...
The quantitative contribution of twinning to hardening behavior and its effect on crystal orientatio...
Deformation twinning in coarse-grained fcc metals results from the highly coordinated glide of Shock...
Abstract The successive evolution of martensitic transformation, twining and dislocation substructu...
The effect of cold rolling on the microstructure evolution and mechanical properties of Fe-₂₃Mn-₀.₃....
We present an investigation of the effect of deformation twinning on the visco-plastic response and ...
The microstructure of a Fe-Mn-Si-Al twinning-induced plasticity (TWIP) steel exhibiting remarkable w...
Advanced high-strength steels as Twinning Induced Plasticity (TWIP) steels have been developed using...
International audienceIn-situ tensile tests were carried out on Fe22Mn0.6C and Fe22Mn0.6C3Al (wt. %)...
International audienceIn-situ tensile tests were carried out on Fe22Mn0.6C and Fe22Mn0.6C3Al (wt. %)...
International audienceIn-situ tensile tests were carried out on Fe22Mn0.6C and Fe22Mn0.6C3Al (wt. %)...
International audienceIn-situ tensile tests were carried out on Fe22Mn0.6C and Fe22Mn0.6C3Al (wt. %)...
International audienceIn-situ tensile tests were carried out on Fe22Mn0.6C and Fe22Mn0.6C3Al (wt. %)...