Age hardening of Al-Cu-Mg type alloys occurs in two stages separated by a constant hardness plateau when the alloys are aged at 110°C to 240C after solution treatment and quenching. This work aims to develop a physically based two-stage hardening model to predict the yield strength of Al-Cu-Mg alloys with compositions in the (+S) phase region. Experiments by means of hardness and tensile tests, differential scanning calorimetry and transmission electron microscopy (TEM) have been carried out to provide the relevant information for the calibration and validation of the model. The model considers a simplified precipitation sequence which involves a pre-precipitate structure followed by S phase. This pre-precipitate structure is referred to as...
The present work applies a model for microstructural evolution in the solid state and Al-Cu-Mg alloy...
The present work applies a model for microstructural evolution in the solid state and Al-Cu-Mg alloy...
The precipitation hardening of an experimental Al-4.2 wt% Mg-0.6 wt% Cu alloy has been studied. Afte...
Age hardening of Al-Cu-Mg type alloys occurs in two stages separated by a constant hardness plateau ...
An age hardening model has been developed to predict the yield strength of Al-Cu-Mg alloys with comp...
This present work consists of developing and testing a model for the prediction of precipitation kin...
This present work consists of developing and testing a model for the prediction ofprecipitation kine...
A physically-based numerical model is developed to predict the microstructural evolution and strengt...
A model is developed to predict the precipitation kinetics and strengthening in Al Cu Mg alloys duri...
Recent work on Al-Cu-Mg based alloys with Cu:Mg atomic ratio close to unity is reviewed to clarify t...
The microstructural evolution during low temperature ageing of two commercial purity alloys (Al-1.2C...
A multi-mechanistic model for microstructure development and strengthening during non-isothermal tre...
A physically-based numerical model is developed to predict the microstructural evolution and strengt...
Transmission electron microscopy, differential scanning calorimetry and hardness tests have been use...
The age hardening and age softening of nine solution treated and subsequently cold-rolled Al-(1-3)Mg...
The present work applies a model for microstructural evolution in the solid state and Al-Cu-Mg alloy...
The present work applies a model for microstructural evolution in the solid state and Al-Cu-Mg alloy...
The precipitation hardening of an experimental Al-4.2 wt% Mg-0.6 wt% Cu alloy has been studied. Afte...
Age hardening of Al-Cu-Mg type alloys occurs in two stages separated by a constant hardness plateau ...
An age hardening model has been developed to predict the yield strength of Al-Cu-Mg alloys with comp...
This present work consists of developing and testing a model for the prediction of precipitation kin...
This present work consists of developing and testing a model for the prediction ofprecipitation kine...
A physically-based numerical model is developed to predict the microstructural evolution and strengt...
A model is developed to predict the precipitation kinetics and strengthening in Al Cu Mg alloys duri...
Recent work on Al-Cu-Mg based alloys with Cu:Mg atomic ratio close to unity is reviewed to clarify t...
The microstructural evolution during low temperature ageing of two commercial purity alloys (Al-1.2C...
A multi-mechanistic model for microstructure development and strengthening during non-isothermal tre...
A physically-based numerical model is developed to predict the microstructural evolution and strengt...
Transmission electron microscopy, differential scanning calorimetry and hardness tests have been use...
The age hardening and age softening of nine solution treated and subsequently cold-rolled Al-(1-3)Mg...
The present work applies a model for microstructural evolution in the solid state and Al-Cu-Mg alloy...
The present work applies a model for microstructural evolution in the solid state and Al-Cu-Mg alloy...
The precipitation hardening of an experimental Al-4.2 wt% Mg-0.6 wt% Cu alloy has been studied. Afte...