Copyright © 2020 The Author(s). As heating time, temperature, strain and strain rate are the four most commonly used controllable parameters in thermomechanical treatments of high strength aluminum alloy, which have great influence on microstructures and mechanical properties. 7055 Al alloy was subjected to solution and thermomechanical treatment (4 routes) at different heating time (route 1), temperatures (route 2), strains (route 3) and strain rates (route 4) to investigate their effects on grain structure and precipitation. The results show that MgZn2 particles are almost completely dissolved back into the matrix after solution treatment, but the coarse Al7Cu2Fe and Al2CuMg remain steady. Particles preferentially precipitate at grain bou...
Metallic materials have a significant number of applications, among which Al alloys have drawn peopl...
The effect of Cu-addition on age-hardening and precipitation have been investigated by hardness meas...
International audienceThis study allowed to understand the influence of severe plastic deformation b...
Thermomechanical treatment is an effective way to refine the coarse microstructures of aluminum allo...
Most industrial hot working operations of heat treatable Al alloys are frequently comprised of sever...
An isothermal compression experiment was conducted to study the rheological behavior of Al-4.57Zn-1....
We have studied the influence of thermomecanical treatments of Al-Zn-Mg-Cu alloys on their microstru...
International audienceCombining submicrometer grain size with nanoscaled precipitation is an attract...
Microstructure evolution during hot deformation of a new Al-Zn-Mg-Cu alloy was investigated by Gleeb...
Effects of temperature and strain rate on the fracture behaviors of an Al-Zn-Mg-Cu alloy are investi...
Microstructures and mechanical properties of Al-5Zn-2.6Mg alloys with 0.24, 0.43, and 0.91 wt.% Cu w...
International audienceFine-scale precipitation of the η′ phase and its precursors are essential for ...
The hot deformation behavior and microstructural evolution of an Al-Zn-Mg-Cu (7150) alloy was studie...
The present study investigates the effect of two different microstructural conditions on the hot def...
Metallic materials have a significant number of applications, among which Al alloys have drawn peopl...
The effect of Cu-addition on age-hardening and precipitation have been investigated by hardness meas...
International audienceThis study allowed to understand the influence of severe plastic deformation b...
Thermomechanical treatment is an effective way to refine the coarse microstructures of aluminum allo...
Most industrial hot working operations of heat treatable Al alloys are frequently comprised of sever...
An isothermal compression experiment was conducted to study the rheological behavior of Al-4.57Zn-1....
We have studied the influence of thermomecanical treatments of Al-Zn-Mg-Cu alloys on their microstru...
International audienceCombining submicrometer grain size with nanoscaled precipitation is an attract...
Microstructure evolution during hot deformation of a new Al-Zn-Mg-Cu alloy was investigated by Gleeb...
Effects of temperature and strain rate on the fracture behaviors of an Al-Zn-Mg-Cu alloy are investi...
Microstructures and mechanical properties of Al-5Zn-2.6Mg alloys with 0.24, 0.43, and 0.91 wt.% Cu w...
International audienceFine-scale precipitation of the η′ phase and its precursors are essential for ...
The hot deformation behavior and microstructural evolution of an Al-Zn-Mg-Cu (7150) alloy was studie...
The present study investigates the effect of two different microstructural conditions on the hot def...
Metallic materials have a significant number of applications, among which Al alloys have drawn peopl...
The effect of Cu-addition on age-hardening and precipitation have been investigated by hardness meas...
International audienceThis study allowed to understand the influence of severe plastic deformation b...