Tensile deformation behavior of the Fe-18Mn-1.5Al-0.6C twinning-induced plasticity steel has been investigated at room temperature, − 125 °C, and − 196 °C. The steel shows the largest ductility at − 125 °C and the smallest ductility at − 196 °C. While work hardening rate continuously decreases with strain at − 196 °C, the specimens tested at other temperatures show a stage where work hardening rate continuously increases with strain, which is more evident at − 125 °C. Stacking faults form most actively at − 125 °C and this contributes to a continuous increase in work hardening rate with strain and an increase in ductility at − 125 °C.112sciescopu
The microstructure and mechanical properties of cold-rolled Fe-18Mn-3Al-3Si-0.03C transformation ind...
The strain-rate dependence of the plasticity-enhancing mechanisms in Fe-12 pct Mn-0.6 pct C-0.06 pct...
DoctorHigh manganese steels have recently drawn much interest in steel and automobile industries due...
High-Mn Twinning Induced Plasticity (TWIP) steels have superior mechanical properties, which make th...
The influence of temperature and stacking fault energy (SFE) on the strain-hardening behavior and cr...
A deformation-dependent stacking fault energy (SEE) viewpoint is invoked to interpret the low strain...
This work investigates the tensile behavior of twinning induced plasticity (TWIP) steel under room t...
The objective of the present study is to analyze the microstructure and mechanical properties of a t...
The tensile properties of Fe-18Mn-0.6C with Al-alloying additions of 0, 1.5 and 2.5 wt.% were invest...
This article reviews original work and important new developments in the field of deformation behavi...
Temperature effect on deformation behavior has been investigated in relation to formation kinetics o...
International audienceA Ti-stabilized cold-worked 15Cr-15Ni steel, called AIM1 (Austenitic Improved ...
The mechanical properties of the Fe-20Mn-4Al-0.3C (20Mn) and Fe-27Mn-4Al-0.3C (27Mn) austenitic stee...
The influence of strain rate on the twinning behaviour and microstructure of an Fe–15Mn–2Al–2Si–0.7C...
The deformation mechanisms and mechanical properties of Fe-Mn-C-Al twinning-induced plasticity (TWIP...
The microstructure and mechanical properties of cold-rolled Fe-18Mn-3Al-3Si-0.03C transformation ind...
The strain-rate dependence of the plasticity-enhancing mechanisms in Fe-12 pct Mn-0.6 pct C-0.06 pct...
DoctorHigh manganese steels have recently drawn much interest in steel and automobile industries due...
High-Mn Twinning Induced Plasticity (TWIP) steels have superior mechanical properties, which make th...
The influence of temperature and stacking fault energy (SFE) on the strain-hardening behavior and cr...
A deformation-dependent stacking fault energy (SEE) viewpoint is invoked to interpret the low strain...
This work investigates the tensile behavior of twinning induced plasticity (TWIP) steel under room t...
The objective of the present study is to analyze the microstructure and mechanical properties of a t...
The tensile properties of Fe-18Mn-0.6C with Al-alloying additions of 0, 1.5 and 2.5 wt.% were invest...
This article reviews original work and important new developments in the field of deformation behavi...
Temperature effect on deformation behavior has been investigated in relation to formation kinetics o...
International audienceA Ti-stabilized cold-worked 15Cr-15Ni steel, called AIM1 (Austenitic Improved ...
The mechanical properties of the Fe-20Mn-4Al-0.3C (20Mn) and Fe-27Mn-4Al-0.3C (27Mn) austenitic stee...
The influence of strain rate on the twinning behaviour and microstructure of an Fe–15Mn–2Al–2Si–0.7C...
The deformation mechanisms and mechanical properties of Fe-Mn-C-Al twinning-induced plasticity (TWIP...
The microstructure and mechanical properties of cold-rolled Fe-18Mn-3Al-3Si-0.03C transformation ind...
The strain-rate dependence of the plasticity-enhancing mechanisms in Fe-12 pct Mn-0.6 pct C-0.06 pct...
DoctorHigh manganese steels have recently drawn much interest in steel and automobile industries due...