Nanosteels are used in automotive applications to accomplish resource-efficiency while providing high-tech properties. Quantitative data and further understanding on the precipitation kinetics in Nanosteels can contribute to fulfil this goal. Small-Angle Neutron Scattering measurements are performed on a Fe-C-Mn-V steel, previously heat-treated in a dilatometer at 650°C for several holding times from seconds to 10 hours. The evolution of the precipitate volume fraction, size distribution and number density is calculated by fitting the experimental Small-Angle Neutron Scattering curves. The effect of phase transformation on precipitation kinetics is also discussed. Complementary Transmission Electron Microscopy, Scanning Electron Microscopy ...
The focus of the present work is on the micro-alloying element vanadium, which is well known for pro...
Small-angle neutron scattering (SANS) was applied to quantify the nanostructural evolution during sp...
Ti-containing micro-alloyed steels are often alloyed with molybdenum (Mo) to reduce nano-precipitate...
Nanosteels are used in automotive applications to accomplish resource-efficiency while providing hig...
Interphase precipitation (IPP) of nanoscale carbides in a vanadium-containing high-strength low-allo...
Interphase precipitation occurring during solid-state phase transformations in micro-alloyed steels ...
International audienceAlloying secondary hardening steels with Ni and Al allows the precipitation of...
In-situ Neutron Diffraction and Small-Angle Neutron Scattering (SANS) are employed for the first tim...
The effect of austenitization temperature, aging temperature, and, aging time on the development of ...
Precipitation strenghthening is one of the most important approaches for enhancing the strenght of m...
In-situ Small-Angle Neutron Scattering (SANS) is used to determine the time evolution of the chemica...
This paper represents the first application of small angle neutron scattering (SANS) to the study of...
NbC precipitation in low carbon steels provides an effective way to increase the mechanical properti...
The precipitation kinetics of vanadium carbides and its interaction with the austenite-to-ferrite ph...
The focus of the present work is on the micro-alloying element vanadium, which is well known for pro...
Small-angle neutron scattering (SANS) was applied to quantify the nanostructural evolution during sp...
Ti-containing micro-alloyed steels are often alloyed with molybdenum (Mo) to reduce nano-precipitate...
Nanosteels are used in automotive applications to accomplish resource-efficiency while providing hig...
Interphase precipitation (IPP) of nanoscale carbides in a vanadium-containing high-strength low-allo...
Interphase precipitation occurring during solid-state phase transformations in micro-alloyed steels ...
International audienceAlloying secondary hardening steels with Ni and Al allows the precipitation of...
In-situ Neutron Diffraction and Small-Angle Neutron Scattering (SANS) are employed for the first tim...
The effect of austenitization temperature, aging temperature, and, aging time on the development of ...
Precipitation strenghthening is one of the most important approaches for enhancing the strenght of m...
In-situ Small-Angle Neutron Scattering (SANS) is used to determine the time evolution of the chemica...
This paper represents the first application of small angle neutron scattering (SANS) to the study of...
NbC precipitation in low carbon steels provides an effective way to increase the mechanical properti...
The precipitation kinetics of vanadium carbides and its interaction with the austenite-to-ferrite ph...
The focus of the present work is on the micro-alloying element vanadium, which is well known for pro...
Small-angle neutron scattering (SANS) was applied to quantify the nanostructural evolution during sp...
Ti-containing micro-alloyed steels are often alloyed with molybdenum (Mo) to reduce nano-precipitate...