In this work an innovative experimental method which can provide a wide range of process parameters within a limited number of tests has been developed and applied in order to determine reliable coefficients for the recrystallization phenomena during hot forming of aluminum alloys. An inverse extrusion test was performed on AA6060-O and AA6082-O alloys at four different temperatures and with two different ram speed and then the specimens were water quenched after testing so as to avoid static recrystallization. The extruded specimens were sectioned and analyzed by means of polarized metallographic techniques and the grain sizes distribution were recorded. The whole thermal and deformation sequence was simulated by means of thermo-mechanical...
In this work an experimental methodology to evaluate the prediction of recrystallized structures in ...
The grain size and shape evolution of 6XXX aluminum alloys during hot metal forming processes are in...
The grain size and shape evolution of 6XXX aluminum alloys during hot metal forming processes are in...
In this work an innovative experimental method which can provide a wide range of process parameters ...
In this work an innovative experimental method which can provide a wide range of process parameters ...
In this work an experimental methodology to evaluate the prediction of recrystallized structures in ...
In this work an experimental methodology to evaluate the prediction of recrystallized structures in ...
In this work an experimental methodology to evaluate the prediction of recrystallized structures in ...
In this paper, a deformation test method to reproduce, on a laboratory scale, the microstructure ev...
In the first part of the work an experimental procedure to investigate the evolution of recrystalli...
In this paper, a deformation test method to reproduce, on a laboratory scale, the microstructure ev...
In this paper, a deformation test method to reproduce, on a laboratory scale, the microstructure ev...
In the first part of the work an experimental procedure to investigate the evolution of recrystalli...
In this work an experimental methodology to evaluate the prediction of recrystallized structures in ...
In this work an experimental methodology to evaluate the prediction of recrystallized structures in ...
In this work an experimental methodology to evaluate the prediction of recrystallized structures in ...
The grain size and shape evolution of 6XXX aluminum alloys during hot metal forming processes are in...
The grain size and shape evolution of 6XXX aluminum alloys during hot metal forming processes are in...
In this work an innovative experimental method which can provide a wide range of process parameters ...
In this work an innovative experimental method which can provide a wide range of process parameters ...
In this work an experimental methodology to evaluate the prediction of recrystallized structures in ...
In this work an experimental methodology to evaluate the prediction of recrystallized structures in ...
In this work an experimental methodology to evaluate the prediction of recrystallized structures in ...
In this paper, a deformation test method to reproduce, on a laboratory scale, the microstructure ev...
In the first part of the work an experimental procedure to investigate the evolution of recrystalli...
In this paper, a deformation test method to reproduce, on a laboratory scale, the microstructure ev...
In this paper, a deformation test method to reproduce, on a laboratory scale, the microstructure ev...
In the first part of the work an experimental procedure to investigate the evolution of recrystalli...
In this work an experimental methodology to evaluate the prediction of recrystallized structures in ...
In this work an experimental methodology to evaluate the prediction of recrystallized structures in ...
In this work an experimental methodology to evaluate the prediction of recrystallized structures in ...
The grain size and shape evolution of 6XXX aluminum alloys during hot metal forming processes are in...
The grain size and shape evolution of 6XXX aluminum alloys during hot metal forming processes are in...