The microstructural evolution during low temperature ageing of two commercial purity alloys (Al-1.2Cu-1.2Mg-0.2Mn and Al-1.9Cu-1.6Mg-0.2Mn at.%) was investigated. The initial stage of hardening in these alloys is very rapid, with the alloys nearly doubling in hardness during 20 h ageing at room temperature. The microstructural evolution during this stage of hardening was investigated using differential scanning calorimetry (DSC), isothermal calorimetry and three-dimensional atom probe analysis (3DAP). It is found that during the hardening a substantial exothermic heat evolution occurs and that the only microstructural change involves the formation of Cu-Mg co-clusters. The kinetics of cluster formation is analysed and the magnitude of the h...
The precipitation hardening of an experimental Al-4.2 wt% Mg-0.6 wt% Cu alloy has been studied. Afte...
This is an initial report of a multi-technique study on the effect of Mg alloying on solute-vacancy ...
The most commonly cited mechanisms for the rapid age hardening of Al–Cu–Mg alloys at about 100–200 °...
Transmission electron microscopy, differential scanning calorimetry and hardness tests have been use...
Recent work on Al-Cu-Mg based alloys with Cu:Mg atomic ratio close to unity is reviewed to clarify t...
A model is developed to predict the precipitation kinetics and strengthening in Al Cu Mg alloys duri...
Age hardening of Al-Cu-Mg type alloys occurs in two stages separated by a constant hardness plateau ...
Age hardening of Al-Cu-Mg type alloys occurs in two stages separated by a constant hardness plateau ...
The hardening and microstructural evolution during ageing of a Al-1.2Cu-0.5Mg and a Al-1.2Cu-1.2Mg (...
The hardening and microstructural evolution during ageing of a Al-1.2Cu-0.5Mg and a A1-1.2Cu-1.2Mg (...
A physically-based numerical model is developed to predict the microstructural evolution and strengt...
Our recent work on Al-Cu-Mg-based alloys with Cu:Mg ratio close to unity showed that the rapid harde...
Our recent work on Al-Cu-Mg- based alloys with Cu:Mg ratio close to unity showed that the rapid hard...
The effects of 3%–50% pre-deformation following solution heat treatment on the age hardening of an A...
International audienceThe kinetics of the microstructural evolution during ageing at 200 degrees C o...
The precipitation hardening of an experimental Al-4.2 wt% Mg-0.6 wt% Cu alloy has been studied. Afte...
This is an initial report of a multi-technique study on the effect of Mg alloying on solute-vacancy ...
The most commonly cited mechanisms for the rapid age hardening of Al–Cu–Mg alloys at about 100–200 °...
Transmission electron microscopy, differential scanning calorimetry and hardness tests have been use...
Recent work on Al-Cu-Mg based alloys with Cu:Mg atomic ratio close to unity is reviewed to clarify t...
A model is developed to predict the precipitation kinetics and strengthening in Al Cu Mg alloys duri...
Age hardening of Al-Cu-Mg type alloys occurs in two stages separated by a constant hardness plateau ...
Age hardening of Al-Cu-Mg type alloys occurs in two stages separated by a constant hardness plateau ...
The hardening and microstructural evolution during ageing of a Al-1.2Cu-0.5Mg and a Al-1.2Cu-1.2Mg (...
The hardening and microstructural evolution during ageing of a Al-1.2Cu-0.5Mg and a A1-1.2Cu-1.2Mg (...
A physically-based numerical model is developed to predict the microstructural evolution and strengt...
Our recent work on Al-Cu-Mg-based alloys with Cu:Mg ratio close to unity showed that the rapid harde...
Our recent work on Al-Cu-Mg- based alloys with Cu:Mg ratio close to unity showed that the rapid hard...
The effects of 3%–50% pre-deformation following solution heat treatment on the age hardening of an A...
International audienceThe kinetics of the microstructural evolution during ageing at 200 degrees C o...
The precipitation hardening of an experimental Al-4.2 wt% Mg-0.6 wt% Cu alloy has been studied. Afte...
This is an initial report of a multi-technique study on the effect of Mg alloying on solute-vacancy ...
The most commonly cited mechanisms for the rapid age hardening of Al–Cu–Mg alloys at about 100–200 °...