The key evidence for understanding the mechanical behavior of advanced high strength steels was provided by atom probe tomography (APT). Chemical overstabilization of retained austenite (RA) leading to the limited transformation-induced plasticity (TRIP) effect was deemed to be the main factor responsible for the low ductility of nanostructured bainitic steel. Appearance of the yield point on the stress-strain curve of prestrained and bake-hardened transformationinduced plasticity steel is due to the unlocking from weak carbon atmospheres of newly formed during prestraining dislocations
The transformation behavior and tensile properties of an ultra-high-strength transformation-induced ...
The aging behavior of a thermomechanically processed Mo-Al-Nb transformation-induced plasticity stee...
The microstructure-property relationship in conventional high strength low alloy (HSLA) steel was ev...
The key evidence for understanding the mechanical behavior of advanced high strength steels was prov...
Development of modern steels consisting of complex or nano-scale microstructures with advanced prope...
The decomposition of martensite during tempering or ageing is an important phenomenon as it leads to...
Complex multiphase microstructures were obtained in transformation induced plasticity C–Mn&nda...
A 0.79C-1.5Si-1.98Mn-0.98Cr-0.24Mo-1.06Al-1.58Co (wt%) steel was isothermally heat treated at 350&de...
Strain hardening and associated deformation mechanisms play a determining role in the performance of...
The stability of the retained austenite has been studied in situ in low-alloyed transformation-induc...
Advanced high strength steels (AHSS) are developed to reduce vehicle weight without sacrificing pass...
The extremely slow transformation kinetics of a nanocrystalline bainitic steel, allow the carbon con...
During irradiation or high-temperature aging, stainless steel can develop precipitates, significantl...
The martensitic transformation behaviour of the metastable austenite phase in low-alloyed transforma...
Strain hardening and associated deformation mechanisms play a determining role in the performance of...
The transformation behavior and tensile properties of an ultra-high-strength transformation-induced ...
The aging behavior of a thermomechanically processed Mo-Al-Nb transformation-induced plasticity stee...
The microstructure-property relationship in conventional high strength low alloy (HSLA) steel was ev...
The key evidence for understanding the mechanical behavior of advanced high strength steels was prov...
Development of modern steels consisting of complex or nano-scale microstructures with advanced prope...
The decomposition of martensite during tempering or ageing is an important phenomenon as it leads to...
Complex multiphase microstructures were obtained in transformation induced plasticity C–Mn&nda...
A 0.79C-1.5Si-1.98Mn-0.98Cr-0.24Mo-1.06Al-1.58Co (wt%) steel was isothermally heat treated at 350&de...
Strain hardening and associated deformation mechanisms play a determining role in the performance of...
The stability of the retained austenite has been studied in situ in low-alloyed transformation-induc...
Advanced high strength steels (AHSS) are developed to reduce vehicle weight without sacrificing pass...
The extremely slow transformation kinetics of a nanocrystalline bainitic steel, allow the carbon con...
During irradiation or high-temperature aging, stainless steel can develop precipitates, significantl...
The martensitic transformation behaviour of the metastable austenite phase in low-alloyed transforma...
Strain hardening and associated deformation mechanisms play a determining role in the performance of...
The transformation behavior and tensile properties of an ultra-high-strength transformation-induced ...
The aging behavior of a thermomechanically processed Mo-Al-Nb transformation-induced plasticity stee...
The microstructure-property relationship in conventional high strength low alloy (HSLA) steel was ev...