When Mg-Gd-Y-Zr alloy is cold forged, a large number of nano-micro shear bands are formed inside the grains. It is observed that micro-shear bands hinder the sliding of dislocations, resulting in an increase in tensile strength at elevated temperatures. The subsequent aging treatment further strengthens the alloy. Compared with unforged aged alloys, aged samples with pre-generated micro-shear bands exhibit higher strength at room temperature to 250 °C, but exhibit similar properties at higher temperatures. Microstructure characterization and fracture behavior analysis indicate that the transformation of deformation mode from dislocation sliding to grain boundary activity is mainly due to the change of mechanical properties with temperature....
To explore room-temperature strengthening and high-temperature ductility, a lightweight novel Mg-1.8...
The Mg-6%Gd-1%Zn alloy exhibits flow serrations when strained at intermediate temperatures due to th...
Fabricating gradient structure (GS) is increasingly adopted in structural engineering materials due ...
The microstructure, high-temperature tensile properties and fracture behavior of the Mg-10Gd-5Y-0.5Z...
Microstructural evolution and mechanical properties of the Mg–2.5Gd–0.5Zr alloy in the as-cast and e...
This study investigates the impact of Gd elements on the enhancement of ductility in the Mg–Gd–Zr al...
The effects of Gd, Y content on the microstructure and mechanical properties of Mg-Gd-Y-Nd-Zr alloy ...
In this study, compositional dependence of age hardening response and tensile properties were invest...
Mg-12Gd-3Y-1Sm-0.5Zr alloy was prepared by induction melting, and the microstructure and properties ...
The microstructure evolution of Mg-Gd-Y-Nd-Zr heat-resistant magnesium alloy after deformation an...
Mg–Gd–Y–Zr alloys are among recently developed Mg alloys having superior mechanical properties at el...
Magnesium alloys have a great potential in automotive industries, compared to conventional steel and...
Microstructures and mechanical properties of the Mg-8Gd-xZn-0.4Zr (x = 0, 1 and 3 wt.%) alloys in th...
Mg-Gd-Y-Zr alloys are among the newly developed magnesium alloys with superior strength properties a...
Cyclic extrusion and compression (CEC) was implemented to process the Mg-Gd-Y-Zr alloy. Microstructu...
To explore room-temperature strengthening and high-temperature ductility, a lightweight novel Mg-1.8...
The Mg-6%Gd-1%Zn alloy exhibits flow serrations when strained at intermediate temperatures due to th...
Fabricating gradient structure (GS) is increasingly adopted in structural engineering materials due ...
The microstructure, high-temperature tensile properties and fracture behavior of the Mg-10Gd-5Y-0.5Z...
Microstructural evolution and mechanical properties of the Mg–2.5Gd–0.5Zr alloy in the as-cast and e...
This study investigates the impact of Gd elements on the enhancement of ductility in the Mg–Gd–Zr al...
The effects of Gd, Y content on the microstructure and mechanical properties of Mg-Gd-Y-Nd-Zr alloy ...
In this study, compositional dependence of age hardening response and tensile properties were invest...
Mg-12Gd-3Y-1Sm-0.5Zr alloy was prepared by induction melting, and the microstructure and properties ...
The microstructure evolution of Mg-Gd-Y-Nd-Zr heat-resistant magnesium alloy after deformation an...
Mg–Gd–Y–Zr alloys are among recently developed Mg alloys having superior mechanical properties at el...
Magnesium alloys have a great potential in automotive industries, compared to conventional steel and...
Microstructures and mechanical properties of the Mg-8Gd-xZn-0.4Zr (x = 0, 1 and 3 wt.%) alloys in th...
Mg-Gd-Y-Zr alloys are among the newly developed magnesium alloys with superior strength properties a...
Cyclic extrusion and compression (CEC) was implemented to process the Mg-Gd-Y-Zr alloy. Microstructu...
To explore room-temperature strengthening and high-temperature ductility, a lightweight novel Mg-1.8...
The Mg-6%Gd-1%Zn alloy exhibits flow serrations when strained at intermediate temperatures due to th...
Fabricating gradient structure (GS) is increasingly adopted in structural engineering materials due ...