High-manganese FeMnC and FeMnAlC austenitic twinning-induced plasticity (TWIP) steel exhibits excellent strain-hardening properties due to the gradual reduction of the mean free path for dislocations glide resulting from deformation twinning. Serrated stress-strain curves are often obtained when this type of steel is tested in a uniaxial tensile test. This phenomenon is due to dynamic strain aging (DSA). It is related to the occurrence of localized Portevin-LeChatelier (PLC) deformation bands. The properties of the PLC bands were accurately determined for a FeMnAlC TWIP steel using a combination of high-sensitivity infrared (IR) thermographic imaging and optical strain analysis carried out in situ during tensile deformation. Strain rate jum...
The mechanical behavior of high manganese TWIP (Twinning Induced Plasticity) steels is characterized...
DoctorIn recent years, austenitic high Mn steels have received a great deal of attention since they ...
The deformation mechanisms and mechanical properties of Fe-Mn-C-Al twinning-induced plasticity (TWIP...
The mechanical properties of twinning-induced plasticity (TWIP) steels are often assumed to be solel...
The thermo-mechanical properties of low stacking fault energy austenitic Fe18Mn0.6C steel exhibiting...
When strained in tension, high-manganese austenitic TWIP steels achieve very high strength and elong...
High-manganese austenitic TWIP (TWinning Induced Plasticity) steels are currently under development ...
High manganese twinning induced plasticity (TWIP) steels have exceptional mechanical properties such...
When strained in tension, high-manganese austenitic twinning induced plasticity (TWIP) steels achiev...
The dynamic tensile behaviour of a type of twinning induced plasticity (TWIP) steel was experimental...
Due to the high manganese content and additions of aluminum, silicon, and possibly other alloying el...
High-Mn Twinning Induced Plasticity (TWIP) steels have superior mechanical properties, which make th...
This article reviews original work and important new developments in the field of deformation behavi...
DoctorHigh Mn Twinning-Induced Plasticity (TWIP) steel is a new type of structural steel, characteri...
The strain-rate dependence of the plasticity-enhancing mechanisms in Fe-12 pct Mn-0.6 pct C-0.06 pct...
The mechanical behavior of high manganese TWIP (Twinning Induced Plasticity) steels is characterized...
DoctorIn recent years, austenitic high Mn steels have received a great deal of attention since they ...
The deformation mechanisms and mechanical properties of Fe-Mn-C-Al twinning-induced plasticity (TWIP...
The mechanical properties of twinning-induced plasticity (TWIP) steels are often assumed to be solel...
The thermo-mechanical properties of low stacking fault energy austenitic Fe18Mn0.6C steel exhibiting...
When strained in tension, high-manganese austenitic TWIP steels achieve very high strength and elong...
High-manganese austenitic TWIP (TWinning Induced Plasticity) steels are currently under development ...
High manganese twinning induced plasticity (TWIP) steels have exceptional mechanical properties such...
When strained in tension, high-manganese austenitic twinning induced plasticity (TWIP) steels achiev...
The dynamic tensile behaviour of a type of twinning induced plasticity (TWIP) steel was experimental...
Due to the high manganese content and additions of aluminum, silicon, and possibly other alloying el...
High-Mn Twinning Induced Plasticity (TWIP) steels have superior mechanical properties, which make th...
This article reviews original work and important new developments in the field of deformation behavi...
DoctorHigh Mn Twinning-Induced Plasticity (TWIP) steel is a new type of structural steel, characteri...
The strain-rate dependence of the plasticity-enhancing mechanisms in Fe-12 pct Mn-0.6 pct C-0.06 pct...
The mechanical behavior of high manganese TWIP (Twinning Induced Plasticity) steels is characterized...
DoctorIn recent years, austenitic high Mn steels have received a great deal of attention since they ...
The deformation mechanisms and mechanical properties of Fe-Mn-C-Al twinning-induced plasticity (TWIP...