Flow behavior of Al-2.0wt.%Cu-1.0wt.%Mn aluminum alloy was investigated by hot compressive test using a Gleebe-3800 thermal simulator. The test parameters about temperature and strain rate range from 573K to 773 K and from 0.01s-1 to 5s-1, respectively, and the true strain is up to 0.6. It can be seen that the peak flow stress increases with increasing the strain rate and decreases by deformation temperature. And the deformation activation energy of Al-2.0wt.%Cu-1.0wt.%Mn alloy is 183.02KJ/mol. A constitutive equation has been constructed to predict the hot deformation behavior, and correlate the peak flow stress predicted with strain rate and deformation temperature
An isothermal compression experiment was conducted to study the rheological behavior of Al-4.57Zn-1....
The deformation behavior of 7005 alloy was studied by hot compression tests. The processing map was ...
The flow behavior of 5754 aluminum alloy was researched using the plane strain compression test for ...
Flow behavior of Al-2.0wt.%Cu-1.0wt.%Mn aluminum alloy was investigated by hot compressive test usin...
Hot deformation behavior of a medium Cr/Mn Al6061 aluminum alloy was studied by isothermal compressi...
In this paper, Gleeble-3500 thermal simulator was employed to perform single-pass isothermal compres...
The hot compression test was conducted in Gleeble-1 500D to study the hot flow stress behavior of AA...
The flow behavior of 7175 aluminum alloy was modeled with Arrhenius-type constitutive equations usin...
The deep understanding of flow behaviors of as-extruded 7050 aluminum alloy significantly contribute...
The flow behavior of 5754 aluminum alloy was researched using the plane strain compression test for ...
The behavior of the flow stress of Al–Cu–Mg–Ag heat-resistant aluminum alloys during hot compression...
The behavior of the flow stress of Al–Cu–Mg–Ag heat-resistant aluminum alloys during hot compression...
The behavior of the flow stress of Al–Cu–Mg–Ag heat-resistant aluminum alloys during hot compression...
In order to investigate the workability and to optimize the hot forming parameters for 2026 Al alloy...
The compression tests in a temperature range of 400–540 °C and strain rates of 0.1–15 s−1 were appli...
An isothermal compression experiment was conducted to study the rheological behavior of Al-4.57Zn-1....
The deformation behavior of 7005 alloy was studied by hot compression tests. The processing map was ...
The flow behavior of 5754 aluminum alloy was researched using the plane strain compression test for ...
Flow behavior of Al-2.0wt.%Cu-1.0wt.%Mn aluminum alloy was investigated by hot compressive test usin...
Hot deformation behavior of a medium Cr/Mn Al6061 aluminum alloy was studied by isothermal compressi...
In this paper, Gleeble-3500 thermal simulator was employed to perform single-pass isothermal compres...
The hot compression test was conducted in Gleeble-1 500D to study the hot flow stress behavior of AA...
The flow behavior of 7175 aluminum alloy was modeled with Arrhenius-type constitutive equations usin...
The deep understanding of flow behaviors of as-extruded 7050 aluminum alloy significantly contribute...
The flow behavior of 5754 aluminum alloy was researched using the plane strain compression test for ...
The behavior of the flow stress of Al–Cu–Mg–Ag heat-resistant aluminum alloys during hot compression...
The behavior of the flow stress of Al–Cu–Mg–Ag heat-resistant aluminum alloys during hot compression...
The behavior of the flow stress of Al–Cu–Mg–Ag heat-resistant aluminum alloys during hot compression...
In order to investigate the workability and to optimize the hot forming parameters for 2026 Al alloy...
The compression tests in a temperature range of 400–540 °C and strain rates of 0.1–15 s−1 were appli...
An isothermal compression experiment was conducted to study the rheological behavior of Al-4.57Zn-1....
The deformation behavior of 7005 alloy was studied by hot compression tests. The processing map was ...
The flow behavior of 5754 aluminum alloy was researched using the plane strain compression test for ...