The influence of microchemistry on the softening behaviour of two cold-rolled Al–Mn–Fe–Si alloys with different initial amounts of Mn (0.4 and 1.0 wt%) is studied. In addition to their as-cast conditions, the supersaturated Al–Mn–Fe-Si alloys were appropriately homogenized at two different conditions, which together produce three different states of microchemistry for each alloy, i.e. solutes and second-phase particles. Samples with different microchemistry states were then cold-rolled before subsequent back-annealing at different temperatures for the two alloys. The softening and concurrent precipitation behaviours of the samples have been monitored by hardness and electrical conductivity measurements ,respectively, and the final microstru...
The effects of Al(MnFe)Si dispersoids, with different sizes and number densities, on the evolution o...
In recent decades, microstructure and texture engineering has become an indispensable factor in meet...
This paper aims to investigate the microstructural evolution and mechanical properties of hot-deform...
Using different homogenization treatments, different initial microchemistry conditions in terms of s...
The softening behaviour during non-isothermal annealing of a cold-rolled Al–Mn–Fe–Si model alloy was...
Investigation of the microstructural evolution of Al-Mn-Fe-Si alloys during annealing after cold rol...
Microstructural evolution of a cold-rolled Al–Mn–Fe–Si alloy during annealing was studied. Except th...
A comprehensive study of the softening behaviour of two different non-heat treatable AlMn-alloys has...
Elongated coarse P{011}〈566〉-oriented grains are frequently observed after annealing of cold-rolled ...
The microstructure transformations and deformation behavior of Al-Fe-Mn alloys with different Fe con...
A characterization of the softening behaviour of four different commercially pure aluminium alloys h...
A study of the effect of various amounts of manganese in solid solution on the recovery and recrysta...
The production of aluminium sheet alloys from as-cast ingots is a complex process, involving several...
Recrystallization during isothermal annealing is studied in a twin-roll cast Al-Mn-Fe-Si alloy with ...
In the present work, the hot rolling at 400°C and post-rolling annealing at 500°C were applied on he...
The effects of Al(MnFe)Si dispersoids, with different sizes and number densities, on the evolution o...
In recent decades, microstructure and texture engineering has become an indispensable factor in meet...
This paper aims to investigate the microstructural evolution and mechanical properties of hot-deform...
Using different homogenization treatments, different initial microchemistry conditions in terms of s...
The softening behaviour during non-isothermal annealing of a cold-rolled Al–Mn–Fe–Si model alloy was...
Investigation of the microstructural evolution of Al-Mn-Fe-Si alloys during annealing after cold rol...
Microstructural evolution of a cold-rolled Al–Mn–Fe–Si alloy during annealing was studied. Except th...
A comprehensive study of the softening behaviour of two different non-heat treatable AlMn-alloys has...
Elongated coarse P{011}〈566〉-oriented grains are frequently observed after annealing of cold-rolled ...
The microstructure transformations and deformation behavior of Al-Fe-Mn alloys with different Fe con...
A characterization of the softening behaviour of four different commercially pure aluminium alloys h...
A study of the effect of various amounts of manganese in solid solution on the recovery and recrysta...
The production of aluminium sheet alloys from as-cast ingots is a complex process, involving several...
Recrystallization during isothermal annealing is studied in a twin-roll cast Al-Mn-Fe-Si alloy with ...
In the present work, the hot rolling at 400°C and post-rolling annealing at 500°C were applied on he...
The effects of Al(MnFe)Si dispersoids, with different sizes and number densities, on the evolution o...
In recent decades, microstructure and texture engineering has become an indispensable factor in meet...
This paper aims to investigate the microstructural evolution and mechanical properties of hot-deform...