The correlation between microstructure, crystallographic orientation and grain boundaries characteristics of an austenitic high manganese steel was systematically investigated. The as-received and cold-rolled specimens with 50% and 70% reduction were analyzed using Scanning Electron Microscopy (SEM), Electron Back-Scattered Diffraction (EBSD) and X-ray diffraction techniques. A significant increase in the fraction of low-energy S3 twin boundaries, from 16.21% to 24.41%, was found in the 70% deformed sample. This was coupled with the formation of {011} austenitic structure, and occurrence of twinning-induced plasticity. The ductile-brittle fracture mode observed in the 70% cold rolled sample, which can be attributed to the formation of the h...
The deformation structure and its contribution to strain hardening of a high manganese austenitic st...
The mechanical behavior of high manganese TWIP (Twinning Induced Plasticity) steels is characterized...
High-manganese austenitic TWIP (TWinning Induced Plasticity) steels are currently under development ...
The microstructure and texture evolution during cold rolling with total thickness reductions of 20-8...
The effect of cold rolling on the microstructure evolution and mechanical properties of Fe-23Mn-0.3C...
The purpose of the paper is to investigate X73MnSiAlNbTi25-1-3 high manganese austenitic steel conta...
Electron backscatter diffraction (EBSD) and electron channeling contrast imaging (ECCI) were used to...
Cold-rolled to 42% thickness reduction and annealed at 500, 625, and 700 C, an Fe-17Mn-3Al-2Si-1Ni-0...
Electron backscatter diffraction (EBSD) and electron channeling contrast imaging (ECCI) were used to...
Effect of cold rolling on the microstructure and mechanical properties of a Fe-23Mn- 0.3C-1.5Al (in ...
The effect of cold rolling on the microstructure evolution and mechanical properties of Fe-₂₃Mn-₀.₃....
The micro-scale plastic deformation behavior of an austenitic Fe-1.2%C-7.0%Mn (in wt%) steel was stu...
Austenitic chromium-nickel steels are one of the most important and frequently. The article discusse...
The evolution of microstructure and texture of a two-phase austenite-ferrite twinning-induced plasti...
TWIP steels have been cynosure owing to their great potential to be used in the automotive industry....
The deformation structure and its contribution to strain hardening of a high manganese austenitic st...
The mechanical behavior of high manganese TWIP (Twinning Induced Plasticity) steels is characterized...
High-manganese austenitic TWIP (TWinning Induced Plasticity) steels are currently under development ...
The microstructure and texture evolution during cold rolling with total thickness reductions of 20-8...
The effect of cold rolling on the microstructure evolution and mechanical properties of Fe-23Mn-0.3C...
The purpose of the paper is to investigate X73MnSiAlNbTi25-1-3 high manganese austenitic steel conta...
Electron backscatter diffraction (EBSD) and electron channeling contrast imaging (ECCI) were used to...
Cold-rolled to 42% thickness reduction and annealed at 500, 625, and 700 C, an Fe-17Mn-3Al-2Si-1Ni-0...
Electron backscatter diffraction (EBSD) and electron channeling contrast imaging (ECCI) were used to...
Effect of cold rolling on the microstructure and mechanical properties of a Fe-23Mn- 0.3C-1.5Al (in ...
The effect of cold rolling on the microstructure evolution and mechanical properties of Fe-₂₃Mn-₀.₃....
The micro-scale plastic deformation behavior of an austenitic Fe-1.2%C-7.0%Mn (in wt%) steel was stu...
Austenitic chromium-nickel steels are one of the most important and frequently. The article discusse...
The evolution of microstructure and texture of a two-phase austenite-ferrite twinning-induced plasti...
TWIP steels have been cynosure owing to their great potential to be used in the automotive industry....
The deformation structure and its contribution to strain hardening of a high manganese austenitic st...
The mechanical behavior of high manganese TWIP (Twinning Induced Plasticity) steels is characterized...
High-manganese austenitic TWIP (TWinning Induced Plasticity) steels are currently under development ...