The present contribution focuses on the nature of the β → α transformation in Ti-5333 alloy at intermediate temperatures. It is indeed still unclear whether this transformation is only controlled by bulk diffusion or whether interfacial kinetics may play a role. To address this issue, we have combined SEM and STEM-EDX to measure the concentrations of Al, Cr, Mo, V and Fe in α intragranular precipitates as well as in the abutting β matrix, paying a particular attention to the concentrations at flat interfaces corresponding to the precipitates habit planes. The comparison with Calphad calculations suggests that interfaces are not at equilibrium during the thickening of the plates
The mechanical properties of near β Ti-alloys are highly dependent on their microstructures, which o...
The progress of environmental as well as performance targets that must be guaranteed by the transpor...
The microstructure was investigated of a β-stabilized Ti–15Mo–2.6Nb–3Al–0.2Si–0.12B alloy at two dif...
The present contribution focuses on the nature of the β → α transformation in Ti-5333 alloy at inter...
International audienceThe microstructure and the solute distribution inside the phases after isother...
Microstructural evolution in β Titanium alloys is an important factor that governs the properties ex...
In this work phase transformations in metastable β (primarily Ti-15Mo) alloys were studied utilizing...
This research aims to combine in-situ diffraction techniques with transmission electron microscopy t...
As a new near β titanium alloy designed by NIN (the Northwest Institute for Non-ferrous Metal Resear...
The crystallography, distribution and stability of the interface phase in two commercial α/β titaniu...
The α phase precipitation via phase separation (β → β′ + β) in the Ti–25Nb–3Mo–3Zr–2Sn (wt.%) alloy ...
The effect of the changing of the local composition of the β matrix on the precipitation of the α ph...
Alloy TIMETAL®834 is a near-α Ti-alloy typically processed to have a complex bimodal microstructure ...
Interdiffusion in multi-phase diffusion couples of polycrystalline Ti and polysynthetically twinned ...
The constitutive behaviour and microstructural evolution of the near-β alloy Ti–5Al–5Mo–5V–3Cr in th...
The mechanical properties of near β Ti-alloys are highly dependent on their microstructures, which o...
The progress of environmental as well as performance targets that must be guaranteed by the transpor...
The microstructure was investigated of a β-stabilized Ti–15Mo–2.6Nb–3Al–0.2Si–0.12B alloy at two dif...
The present contribution focuses on the nature of the β → α transformation in Ti-5333 alloy at inter...
International audienceThe microstructure and the solute distribution inside the phases after isother...
Microstructural evolution in β Titanium alloys is an important factor that governs the properties ex...
In this work phase transformations in metastable β (primarily Ti-15Mo) alloys were studied utilizing...
This research aims to combine in-situ diffraction techniques with transmission electron microscopy t...
As a new near β titanium alloy designed by NIN (the Northwest Institute for Non-ferrous Metal Resear...
The crystallography, distribution and stability of the interface phase in two commercial α/β titaniu...
The α phase precipitation via phase separation (β → β′ + β) in the Ti–25Nb–3Mo–3Zr–2Sn (wt.%) alloy ...
The effect of the changing of the local composition of the β matrix on the precipitation of the α ph...
Alloy TIMETAL®834 is a near-α Ti-alloy typically processed to have a complex bimodal microstructure ...
Interdiffusion in multi-phase diffusion couples of polycrystalline Ti and polysynthetically twinned ...
The constitutive behaviour and microstructural evolution of the near-β alloy Ti–5Al–5Mo–5V–3Cr in th...
The mechanical properties of near β Ti-alloys are highly dependent on their microstructures, which o...
The progress of environmental as well as performance targets that must be guaranteed by the transpor...
The microstructure was investigated of a β-stabilized Ti–15Mo–2.6Nb–3Al–0.2Si–0.12B alloy at two dif...