We report on the strengthening and strain hardening mechanisms in an aged high-Mn lightweight steel (Fe-30.4Mn-8Al-1.2C, wt.%) studied by electron channeling contrast imaging (ECCI), transmission electron microscopy (TEM), atom probe tomography (APT) and correlative TEM/APT. Upon isothermal annealing at 600 °C, nano-sized κ-carbides form, as characterized by TEM and APT. The resultant alloy exhibits high strength and excellent ductility accompanied by a high constant strain hardening rate.In comparison to the as-quenched κ-free state, the precipitation of κ-carbides leads to a significant increase in yield strength (∼480 MPa) without sacrificing much tensile elongation. To study the strengthening and strain hardening behavior of the precipi...
An austenitic low-density steel was processed by dynamic plastic deformation (DPD) over the strain r...
Due to their remarkable combination of high ultimate tensile strength and large total elongation, Hi...
Strain hardening and associated deformation mechanisms play a determining role in the performance of...
MasterIt is well known that the performance of transportation systems such as automobiles can signif...
Fe-Mn-Al-C steel, which is a potential lightweight material for automobiles, has a variety of micros...
Nanometer-sized κ-carbides are efficient strengtheners making light-weight austenitic ($\gamma$) Fe-...
Alloy partitioning during heat treatment in a lightweight precipitation hardened steel was investiga...
Heterogeneous grain structures with dual-nanoprecipitates have been designed and fabricated in a lig...
We introduce the alloy design concepts of high performance austenitic FeMnAlC steels, namely, Simple...
DoctorThe Fe-17 wt.% manganese (Mn) steels usually exhibit deformation induced phase transformation...
A new medium-Mn steel was designed to achieve unprecedented tensile properties, with a yield strengt...
Severe plastic deformation (SPD) introduces both high dislocation density and profound grain refinem...
Carbide precipitation in martensitic low alloyed steels contributes to the mechanical properties thr...
DoctorAustenitic high Mn steels usually show high work hardening rate and accordingly excellent comb...
The microstructural changes occurring during yielding of ultrafine-grained medium Mn transformation-...
An austenitic low-density steel was processed by dynamic plastic deformation (DPD) over the strain r...
Due to their remarkable combination of high ultimate tensile strength and large total elongation, Hi...
Strain hardening and associated deformation mechanisms play a determining role in the performance of...
MasterIt is well known that the performance of transportation systems such as automobiles can signif...
Fe-Mn-Al-C steel, which is a potential lightweight material for automobiles, has a variety of micros...
Nanometer-sized κ-carbides are efficient strengtheners making light-weight austenitic ($\gamma$) Fe-...
Alloy partitioning during heat treatment in a lightweight precipitation hardened steel was investiga...
Heterogeneous grain structures with dual-nanoprecipitates have been designed and fabricated in a lig...
We introduce the alloy design concepts of high performance austenitic FeMnAlC steels, namely, Simple...
DoctorThe Fe-17 wt.% manganese (Mn) steels usually exhibit deformation induced phase transformation...
A new medium-Mn steel was designed to achieve unprecedented tensile properties, with a yield strengt...
Severe plastic deformation (SPD) introduces both high dislocation density and profound grain refinem...
Carbide precipitation in martensitic low alloyed steels contributes to the mechanical properties thr...
DoctorAustenitic high Mn steels usually show high work hardening rate and accordingly excellent comb...
The microstructural changes occurring during yielding of ultrafine-grained medium Mn transformation-...
An austenitic low-density steel was processed by dynamic plastic deformation (DPD) over the strain r...
Due to their remarkable combination of high ultimate tensile strength and large total elongation, Hi...
Strain hardening and associated deformation mechanisms play a determining role in the performance of...