Quantitative atomic structure and phase analysis in the titanium aluminide intermetallic system of composition Ti–45Al–7.5Nb–0.5C (at.%) was conducted in situ by use of high-energy X-ray diffraction from a synchrotron and evaluated using the Rietveld method, implementing a model for atomic order in the α-phase which describes the order to disorder transition α2→α at the eutectoid temperature. The order parameter exhibits unexpected behavior and is entangled with the competition of different kinetic processes. © 2007, Elsevier Ltd
In engineering materials, microstructural evolution during hot-working critically determines the pro...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
An elemental powder composite Ti-48 at.% Al was prepared by cold extrusion. The kinetics of annealin...
Mixtures of 47-Al and 53-Ti powders (atomic %) have been consolidated using back pressure equal-chan...
Mixtures of 47-Al and 53-Ti powders (atomic %) have been consolidated using back pressure equal-chan...
Mixtures of 47-Al and 53-Ti powders (atomic %) have been consolidated using back pressure equal-chan...
Challenging issues concerning energy efficiency and environmental politics require novel approaches ...
Making movies in-situ at glowing temperatures up to 1300°C through a microscope (false color image) ...
Many metals and alloys are used in service under conditions in which they are metastable or unstable...
International audienceWithin the framework of the self-consistent field approximation and the static...
Abstract Intermetallic γ-TiAl based alloys are a novel class of lightweight structural materials tha...
Neutron diffraction has been used for in-situ. investigations to elucidate the phase transformation ...
Intermetallic TiAl alloys with a significant volume fraction of the body-centered cubic β-phase at e...
Phase transformations in near Ti2AlNb alloy occurring on cooling of 10 °C min$^{−1}$ from 1020 °C we...
Being a strong beta stabilizer, Mo has gained importance as an alloying element for so-called beta/g...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
An elemental powder composite Ti-48 at.% Al was prepared by cold extrusion. The kinetics of annealin...
Mixtures of 47-Al and 53-Ti powders (atomic %) have been consolidated using back pressure equal-chan...
Mixtures of 47-Al and 53-Ti powders (atomic %) have been consolidated using back pressure equal-chan...
Mixtures of 47-Al and 53-Ti powders (atomic %) have been consolidated using back pressure equal-chan...
Challenging issues concerning energy efficiency and environmental politics require novel approaches ...
Making movies in-situ at glowing temperatures up to 1300°C through a microscope (false color image) ...
Many metals and alloys are used in service under conditions in which they are metastable or unstable...
International audienceWithin the framework of the self-consistent field approximation and the static...
Abstract Intermetallic γ-TiAl based alloys are a novel class of lightweight structural materials tha...
Neutron diffraction has been used for in-situ. investigations to elucidate the phase transformation ...
Intermetallic TiAl alloys with a significant volume fraction of the body-centered cubic β-phase at e...
Phase transformations in near Ti2AlNb alloy occurring on cooling of 10 °C min$^{−1}$ from 1020 °C we...
Being a strong beta stabilizer, Mo has gained importance as an alloying element for so-called beta/g...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
In engineering materials, microstructural evolution during hot-working critically determines the pro...
An elemental powder composite Ti-48 at.% Al was prepared by cold extrusion. The kinetics of annealin...