International audienceA detailed understanding of precipitation is essential to alloy and process design in age hardened metals, but experimental observation of the underlying processes is challenging. To accelerate such investigations, we introduce a model to simulate Differential Scanning Calorimetry (DSC) curves. The precipitation behavior of an AA6016 aluminum alloy was simulated by a classical nucleation and growth model, coupled with a thermodynamic database containing Al, Mg, Si, Fe, Cu and Mn and their corresponding stable and metastable phases. The focus was laid on the evolution of the phases β″, β′, β (Mg2Si) and Si under isothermal and non-isothermal conditions. DSC tests with rates of 5 and 10 K/min were conducted in the temper...
Differential Scanning Calorimetry (DSC) is a useful technique for the study of phase transformations...
In this work, a method is presented which allows the determination of calorimetric information, and ...
In the present investigation, both static and dynamic precipitations of an Al–Mg–Si–Cu aluminum allo...
International audienceA detailed understanding of precipitation is essential to alloy and process de...
International audienceThe heat flux during a differential scanning calorimetry (DSC) experiment of a...
The temperature and time dependent precipitation behaviour of Al based 6060, 6063, 6005A and 6082 ...
Differential scanning calorimetry DSC is a technique extensively applied to analyse precipitation ...
In the present study, the dissolution and precipitation behaviour of four different aluminium alloys...
In this work quench-induced precipitation during continuous cooling of five Al-Mg-Si alloys is studi...
Time-temperature-precipitation (TTP) diagrams deliver important material data, such as temperature a...
The scope of this work is to investigate the precipitation of two Al-Mg-Si alloys with and without C...
Precipitation in Al-Si alloys during cooling from solution annealing was investigated with advanced ...
Age-hardenable aluminum alloys are widely used in the automotive industry. These alloys are classifi...
A set of extrusion samples of Al-Si-Mg alloys (0.5 wt%Mg and 0.3-0.8 wt%Si) were, respectively, T1- ...
During heating of Al alloys, typically a sequence of precipitation and dissolutionreactions occurs a...
Differential Scanning Calorimetry (DSC) is a useful technique for the study of phase transformations...
In this work, a method is presented which allows the determination of calorimetric information, and ...
In the present investigation, both static and dynamic precipitations of an Al–Mg–Si–Cu aluminum allo...
International audienceA detailed understanding of precipitation is essential to alloy and process de...
International audienceThe heat flux during a differential scanning calorimetry (DSC) experiment of a...
The temperature and time dependent precipitation behaviour of Al based 6060, 6063, 6005A and 6082 ...
Differential scanning calorimetry DSC is a technique extensively applied to analyse precipitation ...
In the present study, the dissolution and precipitation behaviour of four different aluminium alloys...
In this work quench-induced precipitation during continuous cooling of five Al-Mg-Si alloys is studi...
Time-temperature-precipitation (TTP) diagrams deliver important material data, such as temperature a...
The scope of this work is to investigate the precipitation of two Al-Mg-Si alloys with and without C...
Precipitation in Al-Si alloys during cooling from solution annealing was investigated with advanced ...
Age-hardenable aluminum alloys are widely used in the automotive industry. These alloys are classifi...
A set of extrusion samples of Al-Si-Mg alloys (0.5 wt%Mg and 0.3-0.8 wt%Si) were, respectively, T1- ...
During heating of Al alloys, typically a sequence of precipitation and dissolutionreactions occurs a...
Differential Scanning Calorimetry (DSC) is a useful technique for the study of phase transformations...
In this work, a method is presented which allows the determination of calorimetric information, and ...
In the present investigation, both static and dynamic precipitations of an Al–Mg–Si–Cu aluminum allo...