The purpose of this work is to predict and analyze the formability of twinning - induced plasticity steels through the Marciniak-Kuczynski (MK) theory with emphasis on the solutions for improving the prediction results. The selected constitutive equations involve the Yld00-2d of Barlat et al. (2003) plane stress yield function, the Swift strain-hardening power law and the dislocation density based constitutive model proposed by Kim et al. (2013), taking into account the dislocation glide, twinning and dynamic strain aging. Three types of high manganese content TWIP steels sheet were selected. To understand the formability of the TWIP steel and the factors influencing it, a sensitive study on the effect of the mechanical properties of the TW...
High Mn steels demonstrate an exceptional combination of high strength and large ductility as a resu...
High Mn steels demonstrate an exceptional combination of high strength and ductility due to their hi...
High-manganese FeMnC and FeMnAlC austenitic twinning-induced plasticity (TWIP) steel exhibits excell...
The purpose of this work is to predict and analyze the formability of twinning – induced plasticity ...
The proposal of this work is to predict and analyse the formability of twinning - induced plasticity...
DoctorHigh Mn Twinning-Induced Plasticity (TWIP) steel is a new type of structural steel, characteri...
This article reviews original work and important new developments in the field of deformation behavi...
DoctorRecently, the importance of environmental problems such as greenhouse effect has emerged as a ...
TWinning-induced plasticity (TWIP) steels are considered to be prospective materials for production ...
High-manganese austenitic TWIP (TWinning Induced Plasticity) steels are currently under development ...
TWinning Induced Plasticity (TWIP) steels are single phase austenitic alloys that successfully comb...
The mechanical properties of twinning-induced plasticity (TWIP) steels are often assumed to be solel...
AbstractWe present a systematic investigation on the strain hardening and texture evolution in high ...
When strained in tension, high-manganese austenitic twinning induced plasticity (TWIP) steels achiev...
The high work hardening rate and ductility of high manganese austenitic steels is mainly attributed ...
High Mn steels demonstrate an exceptional combination of high strength and large ductility as a resu...
High Mn steels demonstrate an exceptional combination of high strength and ductility due to their hi...
High-manganese FeMnC and FeMnAlC austenitic twinning-induced plasticity (TWIP) steel exhibits excell...
The purpose of this work is to predict and analyze the formability of twinning – induced plasticity ...
The proposal of this work is to predict and analyse the formability of twinning - induced plasticity...
DoctorHigh Mn Twinning-Induced Plasticity (TWIP) steel is a new type of structural steel, characteri...
This article reviews original work and important new developments in the field of deformation behavi...
DoctorRecently, the importance of environmental problems such as greenhouse effect has emerged as a ...
TWinning-induced plasticity (TWIP) steels are considered to be prospective materials for production ...
High-manganese austenitic TWIP (TWinning Induced Plasticity) steels are currently under development ...
TWinning Induced Plasticity (TWIP) steels are single phase austenitic alloys that successfully comb...
The mechanical properties of twinning-induced plasticity (TWIP) steels are often assumed to be solel...
AbstractWe present a systematic investigation on the strain hardening and texture evolution in high ...
When strained in tension, high-manganese austenitic twinning induced plasticity (TWIP) steels achiev...
The high work hardening rate and ductility of high manganese austenitic steels is mainly attributed ...
High Mn steels demonstrate an exceptional combination of high strength and large ductility as a resu...
High Mn steels demonstrate an exceptional combination of high strength and ductility due to their hi...
High-manganese FeMnC and FeMnAlC austenitic twinning-induced plasticity (TWIP) steel exhibits excell...