AbstractIn the present investigation, both static and dynamic precipitations of an Al–Mg–Si–Cu aluminum alloy after solid-solution treatment (SST) were comparatively analyzed using differential scanning calorimetry (DSC). Dynamic aging was performed in the SST alloy through equal channel angular pressing (ECAP) at different temperatures of room temperature, 110, 170, 191 and 300°C. For comparison, static artificial aging was conducted in the SST alloy at 191°C with two aging times of 4 and 10h. The DSC analyses reveal that the dynamic precipitation has occurred in the ECAPed samples, while the activation energies associated with the strengthening precipitates in the dynamic samples are considerably higher than the energies in the SST and st...
A study was carried out on the aging behaviour of a solution treated 6082 aluminium alloy deformed b...
The performance of large-size structural components with varied wall thickness is mainly determined ...
International audienceA detailed understanding of precipitation is essential to alloy and process de...
In the present investigation, both static and dynamic precipitations of an Al–Mg–Si–Cu aluminum allo...
AbstractIn the present investigation, both static and dynamic precipitations of an Al–Mg–Si–Cu alumi...
Equal channel angular pressing (ECAP) was carried out on solution annealed samples of Al–Mg–Si–Zr an...
An Al–4.4Cu–0.5Mg–0.9Si–0.8Mn alloy (IADS 2014 grade) in the solution annealed and peak aged conditi...
The effect of equal channel angular pressing (ECAP) and further cold upsetting (CU) process on the k...
Despite the large number of papers dealing with the Al-Mg-Si system, the decomposition of the supers...
In this study, the evolution of Ω plates during artificial aging and the effect of peak-aging treatm...
Power compensation differential scanning calorimetry (DSC) has been employed to detect and analyse p...
Differential Scanning Calorimetry (DSC) is a useful technique for the study of phase transformations...
Results of a Differential Scanning Calorimetry (DSC) investigation on precipitation hardening in sol...
Al-1.96Cu-0.24Mg-0.18Ag alloy single crystal with (15) plane orientation has been used to investigat...
Heat treatment for precipitation hardening is known to have a significant effect on the nano/microst...
A study was carried out on the aging behaviour of a solution treated 6082 aluminium alloy deformed b...
The performance of large-size structural components with varied wall thickness is mainly determined ...
International audienceA detailed understanding of precipitation is essential to alloy and process de...
In the present investigation, both static and dynamic precipitations of an Al–Mg–Si–Cu aluminum allo...
AbstractIn the present investigation, both static and dynamic precipitations of an Al–Mg–Si–Cu alumi...
Equal channel angular pressing (ECAP) was carried out on solution annealed samples of Al–Mg–Si–Zr an...
An Al–4.4Cu–0.5Mg–0.9Si–0.8Mn alloy (IADS 2014 grade) in the solution annealed and peak aged conditi...
The effect of equal channel angular pressing (ECAP) and further cold upsetting (CU) process on the k...
Despite the large number of papers dealing with the Al-Mg-Si system, the decomposition of the supers...
In this study, the evolution of Ω plates during artificial aging and the effect of peak-aging treatm...
Power compensation differential scanning calorimetry (DSC) has been employed to detect and analyse p...
Differential Scanning Calorimetry (DSC) is a useful technique for the study of phase transformations...
Results of a Differential Scanning Calorimetry (DSC) investigation on precipitation hardening in sol...
Al-1.96Cu-0.24Mg-0.18Ag alloy single crystal with (15) plane orientation has been used to investigat...
Heat treatment for precipitation hardening is known to have a significant effect on the nano/microst...
A study was carried out on the aging behaviour of a solution treated 6082 aluminium alloy deformed b...
The performance of large-size structural components with varied wall thickness is mainly determined ...
International audienceA detailed understanding of precipitation is essential to alloy and process de...