MasterHigh Mn steels have received great attention in recent years since they have excellent combination of high tensile strength and elongation. It is expected that these steels would exhibit good toughness at low temperatures due to their austenitic structures. However, most of high Mn steels have microstructure consisting of austenite with various volume fraction of other constituent phase such as ε-martensite and α’-martensite. Although the transformation induced plasticity (TRIP) and twinning induced plasticity (TWIP) are generally known as the dominant deformation mechanisms in high Mn steels, actual deformation behavior might be quite complex depending on the volume fraction of ε-martensite and α’-martensite. The objective of this re...
The purpose of the paper is to investigate X73MnSiAlNbTi25-1-3 high manganese austenitic steel conta...
Austenitic twinning-induced plasticity (TWIP) steels, which rely on high manganese (Mn) contents, p...
High-Mn Twinning Induced Plasticity (TWIP) steels have superior mechanical properties, which make th...
Due to the high manganese content and additions of aluminum, silicon, and possibly other alloying el...
DoctorIn recent years, austenitic high Mn steels have received a great deal of attention since they ...
This work addresses the influence of deformation temperature in a range from −40°C to 200°C on the m...
DoctorHigh manganese steels have recently drawn much interest in steel and automobile industries due...
The deformation structure and its contribution to strain hardening of a high manganese austenitic st...
DoctorMany researches on how to effectively control the global warming and to reduce greenhouse gase...
The aim of the present study was to investigate the role of deformation temperature on the active de...
The use of modern high strength steels enables automotive producers to notably reduce the vehicle bo...
The present study dealt with the hot compression deformation behavior of Fe−18.5Mn–7Cr−0.6C and Fe−1...
DoctorThe demands for developing high performance high Mn steels have been expanded in recent years ...
Three high manganese TWIP steels were produced with stacking fault energies γSFE ranging from 20.5 t...
The purpose of the paper is to investigate X73MnSiAlNbTi25-1-3 high manganese austenitic steel conta...
The purpose of the paper is to investigate X73MnSiAlNbTi25-1-3 high manganese austenitic steel conta...
Austenitic twinning-induced plasticity (TWIP) steels, which rely on high manganese (Mn) contents, p...
High-Mn Twinning Induced Plasticity (TWIP) steels have superior mechanical properties, which make th...
Due to the high manganese content and additions of aluminum, silicon, and possibly other alloying el...
DoctorIn recent years, austenitic high Mn steels have received a great deal of attention since they ...
This work addresses the influence of deformation temperature in a range from −40°C to 200°C on the m...
DoctorHigh manganese steels have recently drawn much interest in steel and automobile industries due...
The deformation structure and its contribution to strain hardening of a high manganese austenitic st...
DoctorMany researches on how to effectively control the global warming and to reduce greenhouse gase...
The aim of the present study was to investigate the role of deformation temperature on the active de...
The use of modern high strength steels enables automotive producers to notably reduce the vehicle bo...
The present study dealt with the hot compression deformation behavior of Fe−18.5Mn–7Cr−0.6C and Fe−1...
DoctorThe demands for developing high performance high Mn steels have been expanded in recent years ...
Three high manganese TWIP steels were produced with stacking fault energies γSFE ranging from 20.5 t...
The purpose of the paper is to investigate X73MnSiAlNbTi25-1-3 high manganese austenitic steel conta...
The purpose of the paper is to investigate X73MnSiAlNbTi25-1-3 high manganese austenitic steel conta...
Austenitic twinning-induced plasticity (TWIP) steels, which rely on high manganese (Mn) contents, p...
High-Mn Twinning Induced Plasticity (TWIP) steels have superior mechanical properties, which make th...