The spheroidization behavior of an a colony microstructure in Ti-6Al-4V alloy during warm working and subsequent annealing at 600 and 800°C was established. Static spheroidization kinetics during annealing following warm working were explained in the context of approximate models of boundary splitting and termination migrationyesBelgorod State Universit
The mutual relationship between phases in two phase titanium alloys, αHCP and βBBC, is such to have:...
The mutual relationship between phases in two phase titanium alloys, αHCP and βBBC, is such to have:...
The mutual relationship between phases in two phase titanium alloys, αHCP and βBBC, is such to have:...
yesThe spheroidization behavior of an a colony microstructure in Ti-6Al-4V alloy during warm working...
The effect of imposed strain epsilon, annealing temperature T (A), and annealing time tau on the sta...
In the present study, sub beta-transus static annealing was carried out on a (alpha+beta)-warm-rolle...
The first part of this study describes the evolution of microstructure and texture in Ti-6Al-4V-0.1B...
The first part of this study describes the evolution of microstructure and texture in Ti-6Al-4V-0.1B...
We report here, interrelation between orientation dependent spheroidization 1] and bulk texture evol...
We report here, interrelation between orientation dependent spheroidization 1] and bulk texture evol...
Α/β titanium alloys have many industrial applications in various fields such as aeronautics. Spheroi...
Α/β titanium alloys have many industrial applications in various fields such as aeronautics. Spheroi...
Les alliages de titane α/β ont beaucoup d’applications dans des domaines industriels divers comme l’...
Α/β titanium alloys have many industrial applications in various fields such as aeronautics. Spheroi...
Ti-6Al-4V alloy undergoes flow softening during hot working at temperatures around 500-800ºC. Diff...
The mutual relationship between phases in two phase titanium alloys, αHCP and βBBC, is such to have:...
The mutual relationship between phases in two phase titanium alloys, αHCP and βBBC, is such to have:...
The mutual relationship between phases in two phase titanium alloys, αHCP and βBBC, is such to have:...
yesThe spheroidization behavior of an a colony microstructure in Ti-6Al-4V alloy during warm working...
The effect of imposed strain epsilon, annealing temperature T (A), and annealing time tau on the sta...
In the present study, sub beta-transus static annealing was carried out on a (alpha+beta)-warm-rolle...
The first part of this study describes the evolution of microstructure and texture in Ti-6Al-4V-0.1B...
The first part of this study describes the evolution of microstructure and texture in Ti-6Al-4V-0.1B...
We report here, interrelation between orientation dependent spheroidization 1] and bulk texture evol...
We report here, interrelation between orientation dependent spheroidization 1] and bulk texture evol...
Α/β titanium alloys have many industrial applications in various fields such as aeronautics. Spheroi...
Α/β titanium alloys have many industrial applications in various fields such as aeronautics. Spheroi...
Les alliages de titane α/β ont beaucoup d’applications dans des domaines industriels divers comme l’...
Α/β titanium alloys have many industrial applications in various fields such as aeronautics. Spheroi...
Ti-6Al-4V alloy undergoes flow softening during hot working at temperatures around 500-800ºC. Diff...
The mutual relationship between phases in two phase titanium alloys, αHCP and βBBC, is such to have:...
The mutual relationship between phases in two phase titanium alloys, αHCP and βBBC, is such to have:...
The mutual relationship between phases in two phase titanium alloys, αHCP and βBBC, is such to have:...