We have investigated micro-structural parameters, twin and stacking fault probabilities and dislocation density, of twinning induced plasticity (TWIP) steels by using neutron diffraction profile analysis. It is observed that the addition of 1.4 wt.% Al in Fe-18Mn-0.6C steel leads to lower tensile strength and higher elongation, reducing twin formation rate. In other words, Al addition weakens the tendency of twin and stacking faults evolution under applied strain in the range of epsilon = 0.0-0.4, while the screw component of dislocations is increased. It is also confirmed that enlarged austenite grain size in TWIP steels disfavors twin and stacking fault formation. (C) 2011 Elsevier B.V. All rights reserved.X111613sciescopu
Organizers: The Chinese Society for Metals and Baosteel Group CorporationTechnical Keynote Lecture -...
High-manganese austenitic TWIP (TWinning Induced Plasticity) steels are currently under development ...
A deformation-dependent stacking fault energy (SEE) viewpoint is invoked to interpret the low strain...
DoctorThe micro-structural parameters, martensitic transformation and mechanical properties of high ...
The strain hardening and damage behavior of Al-added twinning induced plasticity (TWIP) steels were ...
In situ neutron diffraction experiments were performed to measure the tensile deformation behavior o...
A high Mn TWIP (TWinning Induced Plasticity) steel (0.6C-22Mn steel) and an Al-added TWIP steel (0.6...
DoctorHigh Mn Twinning-Induced Plasticity (TWIP) steel is a new type of structural steel, characteri...
The deformation mechanisms and mechanical properties of Fe-Mn-C-Al twinning-induced plasticity (TWIP...
Fe-17.8Mn-0.52C-0.5Al TWIP steel has been investigated under high-strain rate conditions. Twinning a...
This article reviews original work and important new developments in the field of deformation behavi...
In the present work, the mechanical properties and the deformation mechanisms of two Fe-Mn-Al-C TWIP...
In the present work, the mechanical properties and the deformation mechanisms of two Fe-Mn-Al-C TWIP...
The mechanical behavior of high manganese TWIP (Twinning Induced Plasticity) steels is characterized...
DoctorIn the present study, Effects of Alloying Elements Mn and Al addition on delayed fracture phen...
Organizers: The Chinese Society for Metals and Baosteel Group CorporationTechnical Keynote Lecture -...
High-manganese austenitic TWIP (TWinning Induced Plasticity) steels are currently under development ...
A deformation-dependent stacking fault energy (SEE) viewpoint is invoked to interpret the low strain...
DoctorThe micro-structural parameters, martensitic transformation and mechanical properties of high ...
The strain hardening and damage behavior of Al-added twinning induced plasticity (TWIP) steels were ...
In situ neutron diffraction experiments were performed to measure the tensile deformation behavior o...
A high Mn TWIP (TWinning Induced Plasticity) steel (0.6C-22Mn steel) and an Al-added TWIP steel (0.6...
DoctorHigh Mn Twinning-Induced Plasticity (TWIP) steel is a new type of structural steel, characteri...
The deformation mechanisms and mechanical properties of Fe-Mn-C-Al twinning-induced plasticity (TWIP...
Fe-17.8Mn-0.52C-0.5Al TWIP steel has been investigated under high-strain rate conditions. Twinning a...
This article reviews original work and important new developments in the field of deformation behavi...
In the present work, the mechanical properties and the deformation mechanisms of two Fe-Mn-Al-C TWIP...
In the present work, the mechanical properties and the deformation mechanisms of two Fe-Mn-Al-C TWIP...
The mechanical behavior of high manganese TWIP (Twinning Induced Plasticity) steels is characterized...
DoctorIn the present study, Effects of Alloying Elements Mn and Al addition on delayed fracture phen...
Organizers: The Chinese Society for Metals and Baosteel Group CorporationTechnical Keynote Lecture -...
High-manganese austenitic TWIP (TWinning Induced Plasticity) steels are currently under development ...
A deformation-dependent stacking fault energy (SEE) viewpoint is invoked to interpret the low strain...