A model for the yield strength of multi-component alloys is presented and applied to overaged Al-Zn-Mg-Cu alloys (7xxx series). The model is based on an approximation of the strengthening due to precipitate by-passing during precipitate coarsening and takes account of ternary and higher order systems. It takes account of the influence of supersaturation on precipitation rates and of volume fraction on coarsening rates, as well crystallographic texture and recrystallisation. The model has been successfully used to fit and predict the yield strength data of 21 Al-Zn-Mg-Cu alloys, with compositions spread over the whole range of commercial alloying compositions, and which were aged for a range of times and temperatures to produce yield strengt...
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...
The volume fraction of age hardening precipitates upon peak ageing after different quenching rates h...
A model for the yield strength of multi-component alloys is presented and applied to overaged Al–Zn–...
An age hardening model has been developed to predict the yield strength of Al-Cu-Mg alloys with comp...
Age hardening of Al-Cu-Mg type alloys occurs in two stages separated by a constant hardness plateau ...
A detailed quantitative model for the strengthening of monolithic alloys and composites due to preci...
High zinc containing Al-Zn-Mg-Cu is the research focus of ultra-high strength aluminum alloy. In the...
Mechanical properties of age-hardenable Al alloys depend strongly on the characteristics of nanometr...
International audienceWe present a systematic study of the relationship between precipitate microstr...
A detailed quantitative model for the strengthening of monolithic alloys and composites due to preci...
The mechanical properties of age hardenable Al alloys depend strongly on the precipitate microstruct...
The mechanical properties of Al alloys are strongly affected by their microstructure: the size and...
This present work consists of developing and testing a model for the prediction of precipitation kin...
The mechanical properties of Al alloys are strongly affected by their microstructure: the size and...
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...
The volume fraction of age hardening precipitates upon peak ageing after different quenching rates h...
A model for the yield strength of multi-component alloys is presented and applied to overaged Al–Zn–...
An age hardening model has been developed to predict the yield strength of Al-Cu-Mg alloys with comp...
Age hardening of Al-Cu-Mg type alloys occurs in two stages separated by a constant hardness plateau ...
A detailed quantitative model for the strengthening of monolithic alloys and composites due to preci...
High zinc containing Al-Zn-Mg-Cu is the research focus of ultra-high strength aluminum alloy. In the...
Mechanical properties of age-hardenable Al alloys depend strongly on the characteristics of nanometr...
International audienceWe present a systematic study of the relationship between precipitate microstr...
A detailed quantitative model for the strengthening of monolithic alloys and composites due to preci...
The mechanical properties of age hardenable Al alloys depend strongly on the precipitate microstruct...
The mechanical properties of Al alloys are strongly affected by their microstructure: the size and...
This present work consists of developing and testing a model for the prediction of precipitation kin...
The mechanical properties of Al alloys are strongly affected by their microstructure: the size and...
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...
The volume fraction of age hardening precipitates upon peak ageing after different quenching rates h...