The precipitation kinetics of vanadium carbides and its interaction with the austenite-to-ferrite phase transformation is studied in two micro-alloyed steels that differ in vanadium and carbon concentrations by a factor of two, but have the same vanadium-to-carbon atomic ratio of 1:1. Dilatometry is used for heat-treating the specimens and studying the phase transformation kinetics during annealing at isothermal holding temperatures of 900, 750 and 650 °C for up to 10 h. Small-Angle Neutron Scattering (SANS) and Atom Probe Tomography (APT) measurements are performed to study the vanadium carbide precipitation kinetics. Vanadium carbide precipitation is not observed after annealing for 10 h at 900 and 750 °C, which is contrary to predictions...
The precipitation process of V_4C_3 and the structural change in Mn-Cr-V type austenitic steel of th...
A study was made of a series of steels containing varying amounts of carbon and vanadium (Table l). ...
Recent work has highlighted unusual effects of vanadium when used in conjunction with other microall...
The precipitation kinetics of vanadium carbides and its interaction with the austenite-to-ferrite ph...
In-situ Neutron Diffraction and Small-Angle Neutron Scattering (SANS) are employed for the first tim...
The focus of the present work is on the micro-alloying element vanadium, which is well known for pro...
In-situ Small-Angle Neutron Scattering (SANS) is used to determine the time evolution of the chemica...
Vanadium as an important alloying element in steels was initially associated with the properties ach...
A series of carbon manganese steels containing varying amounts of carbon, vanadium and nitrogen was ...
The influence of vanadium additions on transformation kinetics has been investigated in a medium car...
The evolution of characteristic features of interphase precipitation in steels with progressive of a...
Introducing fine precipitates is an important way to enhance the properties of transformation-induce...
Dilatometric techniques were used to build the continuous cooling transformation (CCT) diagram for a...
Interphase precipitation (IPP) of nanoscale carbides in a vanadium-containing high-strength low-allo...
The precipitation process of V_4C_3 and the structural change in Mn-Cr-V type austenitic steel of th...
A study was made of a series of steels containing varying amounts of carbon and vanadium (Table l). ...
Recent work has highlighted unusual effects of vanadium when used in conjunction with other microall...
The precipitation kinetics of vanadium carbides and its interaction with the austenite-to-ferrite ph...
In-situ Neutron Diffraction and Small-Angle Neutron Scattering (SANS) are employed for the first tim...
The focus of the present work is on the micro-alloying element vanadium, which is well known for pro...
In-situ Small-Angle Neutron Scattering (SANS) is used to determine the time evolution of the chemica...
Vanadium as an important alloying element in steels was initially associated with the properties ach...
A series of carbon manganese steels containing varying amounts of carbon, vanadium and nitrogen was ...
The influence of vanadium additions on transformation kinetics has been investigated in a medium car...
The evolution of characteristic features of interphase precipitation in steels with progressive of a...
Introducing fine precipitates is an important way to enhance the properties of transformation-induce...
Dilatometric techniques were used to build the continuous cooling transformation (CCT) diagram for a...
Interphase precipitation (IPP) of nanoscale carbides in a vanadium-containing high-strength low-allo...
The precipitation process of V_4C_3 and the structural change in Mn-Cr-V type austenitic steel of th...
A study was made of a series of steels containing varying amounts of carbon and vanadium (Table l). ...
Recent work has highlighted unusual effects of vanadium when used in conjunction with other microall...