Under the temperature range of 200–400 °C and the strain rate of 0.01~1s−1, the microstructure evolution of AZ31B Mg alloy under the new hot constrained compression method compared with single compression test was studied by means of uniaxial compression test and finite element simulation. The effects of strain rate, temperature and constraining material on the equivalent stress and strain, damage distribution, and deformation zone structure of AZ31B Mg alloy are discussed. Results show that, compared with single compression, the stress state and deformation degree of each zone of the specimen is different under the hot constrained compression method. The specimen with constrained compression produces a special deformation zone. Under the c...
The formability of magnesium alloys can be significantly improved by Ca as an alloying addition. Com...
In order to investigate the effect of temperature on the microstructure evolution and mechanical res...
The microstructure and mechanical properties improve substantially by hot working. This aspect in as...
AbstractHot compression deformation was exerted on AZ31 magnesium alloy from 200°C to 420°C with the...
The hot deformation behavior of a Mg–9Al–1Zn alloy produced by high pressure die casting has been in...
The hot deformation behavior of an AZ81 magnesium alloy was investigated by hot compressive testing ...
The thermal compression deformation behavior of homogenized Mg–5Zn–1Mn (wt.%) alloy was systematical...
The plastic deformation behavior and dynamic recrystallization (DRX) in homogenized AZ31 Mg alloy wa...
The plastic deformation behavior and dynamic recrystallization (DRX) in homogenized AZ31 Mg alloy wa...
The anisotropy of Mg alloy is investigated using uniaxial compression experiments. The anisotropic b...
AbstractHot compression deformation was exerted on AZ31 magnesium alloy from 200°C to 420°C with the...
High temperature deformation behavior of AZ31 Mg alloy was investigated in this study on the basis o...
The microstructure and texture evolutions of the Mg–2Zn–0.5Mn–0.2Ca–0.3Nd–0.7La alloy were investiga...
The influence of deformation conditions on the critical damage factor of AZ31 magnesium alloy was an...
The microstructure and mechanical properties improve substantially by hot working. This aspect in as...
The formability of magnesium alloys can be significantly improved by Ca as an alloying addition. Com...
In order to investigate the effect of temperature on the microstructure evolution and mechanical res...
The microstructure and mechanical properties improve substantially by hot working. This aspect in as...
AbstractHot compression deformation was exerted on AZ31 magnesium alloy from 200°C to 420°C with the...
The hot deformation behavior of a Mg–9Al–1Zn alloy produced by high pressure die casting has been in...
The hot deformation behavior of an AZ81 magnesium alloy was investigated by hot compressive testing ...
The thermal compression deformation behavior of homogenized Mg–5Zn–1Mn (wt.%) alloy was systematical...
The plastic deformation behavior and dynamic recrystallization (DRX) in homogenized AZ31 Mg alloy wa...
The plastic deformation behavior and dynamic recrystallization (DRX) in homogenized AZ31 Mg alloy wa...
The anisotropy of Mg alloy is investigated using uniaxial compression experiments. The anisotropic b...
AbstractHot compression deformation was exerted on AZ31 magnesium alloy from 200°C to 420°C with the...
High temperature deformation behavior of AZ31 Mg alloy was investigated in this study on the basis o...
The microstructure and texture evolutions of the Mg–2Zn–0.5Mn–0.2Ca–0.3Nd–0.7La alloy were investiga...
The influence of deformation conditions on the critical damage factor of AZ31 magnesium alloy was an...
The microstructure and mechanical properties improve substantially by hot working. This aspect in as...
The formability of magnesium alloys can be significantly improved by Ca as an alloying addition. Com...
In order to investigate the effect of temperature on the microstructure evolution and mechanical res...
The microstructure and mechanical properties improve substantially by hot working. This aspect in as...