Strain hardening behavior and the corresponding microstructure evolution of the high-manganese steel with additions of Si and Al were investigated in this study. Thermomechanically processed and solution-heat-treated sheet steels were compared under conditions of interrupted tensile tests. Relationships between microstructure and strain hardening were assessed for different strain levels using light microscopy and scanning electron microscopy techniques. It was found that the deformation of both steels at low strain levels was dominated by dislocation glide before the occurrence of mechanical twinning. The amount of twins, slip lines, and bands was increasing gradually up to the point of necking. As the strain level increased, dislocation d...
When strained in tension, high-manganese austenitic twinning induced plasticity (TWIP) steels achiev...
In this scientific publication, research results of two newly developed hot-rolled Fe-Mn-Al-C (X105)...
The purpose of the paper is to investigate X73MnSiAlNbTi25-1-3 high manganese austenitic steel conta...
The research presented in this paper is part of a larger project concerning deformation behavior, mi...
International audienceThe hardening and deformation characteristics of Hadfield microstructure are s...
Tensile properties of the Fe⁻1.44C⁻8Mn⁻1.9Al (mass %) steel with a fully austeniti...
The deformation structure and its contribution to strain hardening of a high manganese austenitic st...
Due to the high manganese content and additions of aluminum, silicon, and possibly other alloying el...
The mechanical behavior of high manganese TWIP (Twinning Induced Plasticity) steels is characterized...
In the current study, the work-hardening behaviour of a high manganese TWIP steel was investigated a...
Abstract The successive evolution of martensitic transformation, twining and dislocation substructu...
The effect of grain size on the mechanical properties and deformation twinning behaviour in high man...
This work addresses the influence of deformation temperature in a range from −40°C to 200°C on the m...
Different initial microstructures with various bimodal grain size distributions (BGSD) were produced...
The use of modern high strength steels enables automotive producers to notably reduce the vehicle bo...
When strained in tension, high-manganese austenitic twinning induced plasticity (TWIP) steels achiev...
In this scientific publication, research results of two newly developed hot-rolled Fe-Mn-Al-C (X105)...
The purpose of the paper is to investigate X73MnSiAlNbTi25-1-3 high manganese austenitic steel conta...
The research presented in this paper is part of a larger project concerning deformation behavior, mi...
International audienceThe hardening and deformation characteristics of Hadfield microstructure are s...
Tensile properties of the Fe⁻1.44C⁻8Mn⁻1.9Al (mass %) steel with a fully austeniti...
The deformation structure and its contribution to strain hardening of a high manganese austenitic st...
Due to the high manganese content and additions of aluminum, silicon, and possibly other alloying el...
The mechanical behavior of high manganese TWIP (Twinning Induced Plasticity) steels is characterized...
In the current study, the work-hardening behaviour of a high manganese TWIP steel was investigated a...
Abstract The successive evolution of martensitic transformation, twining and dislocation substructu...
The effect of grain size on the mechanical properties and deformation twinning behaviour in high man...
This work addresses the influence of deformation temperature in a range from −40°C to 200°C on the m...
Different initial microstructures with various bimodal grain size distributions (BGSD) were produced...
The use of modern high strength steels enables automotive producers to notably reduce the vehicle bo...
When strained in tension, high-manganese austenitic twinning induced plasticity (TWIP) steels achiev...
In this scientific publication, research results of two newly developed hot-rolled Fe-Mn-Al-C (X105)...
The purpose of the paper is to investigate X73MnSiAlNbTi25-1-3 high manganese austenitic steel conta...