International audienceThe object of the present study is to design a methodology to follow the kinetics of T-1 precipitation, in an AA2198 alloy, in terms of precipitate size, morphology (thickness, diameter) and volume fraction, during a two-temperature isothermal heat treatment. We used in situ small-angle X-ray scattering (SAXS) as a way to measure the evolution of the T-1 mean thickness and diameter during the heat treatment. Transmission electron microscopy (TEM) was then performed in order to calibrate these evolutions. Furthermore, we demonstrate that the volume fraction evolution can be described successfully using a simple analysis of the differential scanning calorimetry (DSC) thermograms. The latter was calibrated by selected obs...
The structure of β'/δ' and T1 precipitates in Al-Li-Cu alloy has been investigated using the atomic ...
Heat treatment for precipitation hardening is known to have a significant effect on the nano/microst...
Aluminium alloys can be strengthened significantly by nano-scale precipitates that restrict dislocat...
International audienceThe object of the present study is to design a methodology to follow the kinet...
This research concerns the precipitation and subsequent dissolution of precipitate phases in an Al–0...
International audienceThe structure of T(1) precipitates which formed under ageing in Al-Li-Cu alloy...
Age-hardening in Al alloys has been used for over a century to improve its mechanical properties. Ho...
Age-hardening in Al alloys has been used for over a century to improve its mechanical properties. Ho...
The precipitation of δ', T1 and S' phases during ageing at 160 °C after quench, has been studied in ...
Differential Scanning Calorimetry (DSC) is a useful technique for the study of phase transformations...
We present a new approach to study the three- dimensional compositional and structural evolution of ...
Transmission electron microscopy (TEM) and differential scanning calorimetry (DSC) have been used to...
International audienceThe precipitation behaviour in an Al-5 wt.% Mg-1.8 wt.% Li alloy has been syst...
International audienceUsing a combination of experimental techniques, including anomalous small-angl...
The structure of β'/δ' and T1 precipitates in Al-Li-Cu alloy has been investigated using the atomic ...
Heat treatment for precipitation hardening is known to have a significant effect on the nano/microst...
Aluminium alloys can be strengthened significantly by nano-scale precipitates that restrict dislocat...
International audienceThe object of the present study is to design a methodology to follow the kinet...
This research concerns the precipitation and subsequent dissolution of precipitate phases in an Al–0...
International audienceThe structure of T(1) precipitates which formed under ageing in Al-Li-Cu alloy...
Age-hardening in Al alloys has been used for over a century to improve its mechanical properties. Ho...
Age-hardening in Al alloys has been used for over a century to improve its mechanical properties. Ho...
The precipitation of δ', T1 and S' phases during ageing at 160 °C after quench, has been studied in ...
Differential Scanning Calorimetry (DSC) is a useful technique for the study of phase transformations...
We present a new approach to study the three- dimensional compositional and structural evolution of ...
Transmission electron microscopy (TEM) and differential scanning calorimetry (DSC) have been used to...
International audienceThe precipitation behaviour in an Al-5 wt.% Mg-1.8 wt.% Li alloy has been syst...
International audienceUsing a combination of experimental techniques, including anomalous small-angl...
The structure of β'/δ' and T1 precipitates in Al-Li-Cu alloy has been investigated using the atomic ...
Heat treatment for precipitation hardening is known to have a significant effect on the nano/microst...
Aluminium alloys can be strengthened significantly by nano-scale precipitates that restrict dislocat...