The α → β phase transformation upon heating in the Ti-5553 alloy with lamellar-nodular bimodal microstructure was tracked in situ with high energy X-ray diffraction. Rapid heating at 10, 50 and 100 °C s−1 from room temperature to 1050 °C was tested. Phase transformation on heating was studied by a combined analysis of the microstructural features that provides estimates of mass fractions, mean lattice parameters and full width at half maximum for the two phases. In comparison with equilibrium conditions, the experimental mass fractions reveal a shift of the transformation domain toward high temperatures when the heating rate increases. Also, the dissolution of the α phase is largely impacted by its morphology, the transformation being faste...
The influence of slow heating rates: 2, 5, 10 and 30˚C/min (0.033, 0.083, 0.166 and 0.50˚C/s) on the...
The role of element partitioning on the phase transformation kinetics of a bi-modal α + β Ti–6Al–6V–...
The influence of slow heating rates: 2, 5, 10 and 30˚C/min (0.033, 0.083, 0.166 and 0.50˚C/s) on the...
The a -> b phase transformation upon heating in the Ti-5553 alloy with lamellar-nodular bimodal micr...
The progress of environmental as well as performance targets that must be guaranteed by the transpor...
The progress of environmental as well as performance targets that must be guaranteed by the transpor...
The effect of heating rate on the phase transformation kinetics of a Ti-10V-2Fe-3Al metastable β tit...
Thermal treatments are the main route to achieve improvements in mechanical properties of β-metasta...
The effect of heating rate on the phase transformation kinetics of a Ti-10V-2Fe-3Al metastable β tit...
The effect of initial structure on phase evolution in continuous heating of a near-α TA15 titanium a...
peer reviewedThe influence of slow heating rates: 2, 5, 10 and 30°C/min (0.033, 0.083, 0.166 and 0.5...
As a new near β titanium alloy designed by NIN (the Northwest Institute for Non-ferrous Metal Resear...
As a new near β titanium alloy designed by NIN (the Northwest Institute for Non-ferrous Metal Resear...
This research aims to combine in-situ diffraction techniques with transmission electron microscopy t...
International audienceWe have investigated the microstructure evolutions in the Ti17 near Click to v...
The influence of slow heating rates: 2, 5, 10 and 30˚C/min (0.033, 0.083, 0.166 and 0.50˚C/s) on the...
The role of element partitioning on the phase transformation kinetics of a bi-modal α + β Ti–6Al–6V–...
The influence of slow heating rates: 2, 5, 10 and 30˚C/min (0.033, 0.083, 0.166 and 0.50˚C/s) on the...
The a -> b phase transformation upon heating in the Ti-5553 alloy with lamellar-nodular bimodal micr...
The progress of environmental as well as performance targets that must be guaranteed by the transpor...
The progress of environmental as well as performance targets that must be guaranteed by the transpor...
The effect of heating rate on the phase transformation kinetics of a Ti-10V-2Fe-3Al metastable β tit...
Thermal treatments are the main route to achieve improvements in mechanical properties of β-metasta...
The effect of heating rate on the phase transformation kinetics of a Ti-10V-2Fe-3Al metastable β tit...
The effect of initial structure on phase evolution in continuous heating of a near-α TA15 titanium a...
peer reviewedThe influence of slow heating rates: 2, 5, 10 and 30°C/min (0.033, 0.083, 0.166 and 0.5...
As a new near β titanium alloy designed by NIN (the Northwest Institute for Non-ferrous Metal Resear...
As a new near β titanium alloy designed by NIN (the Northwest Institute for Non-ferrous Metal Resear...
This research aims to combine in-situ diffraction techniques with transmission electron microscopy t...
International audienceWe have investigated the microstructure evolutions in the Ti17 near Click to v...
The influence of slow heating rates: 2, 5, 10 and 30˚C/min (0.033, 0.083, 0.166 and 0.50˚C/s) on the...
The role of element partitioning on the phase transformation kinetics of a bi-modal α + β Ti–6Al–6V–...
The influence of slow heating rates: 2, 5, 10 and 30˚C/min (0.033, 0.083, 0.166 and 0.50˚C/s) on the...