Mechanical properties usually take precedence for wrought magnesium alloy when it would be used as a structure material. This paper proposed an approach that achieved high strength in AZ91 Mg alloy. The main procedure combined solution heat treatment, equal channel angular pressing (ECAP), and the subsequent low temperature rolling. After solution heat treatment and ECAP, the alloy had fine grains and excellent ductility, which benefited the following rolling at low temperature. By the following rolling (at 150 °C), the strength was further increased to ~432 MPa with a moderate ductility. This approach was proved effective in refining the grains and accumulating dislocations. The ultrahigh strength was attributed to the high density of...
The magnesium alloy AZ31 was processed by severe hot rolling and annealing. This processing was opti...
A solution-treated AZ91 bulk material was deep-surface-rolled at room temperature to investigate the...
Equal-channel angular pressing (ECAP) was conducted on a Mg–0.55% Zr alloy at a temperature of 513 K...
Abstract Mechanical properties of AZ31B magnesium alloy were modified in this work by various proces...
Developing cost-effective magnesium alloys with high strength and good ductility is a long-standing ...
Mg is a metal with a very low density (=1.7 g/cm3). In general, however, it is difficult to form its...
Processing through the application of equal-channel angular pressing (ECAP) is recognized as one of ...
Abstract: Magnesium and its alloys have play an strategic role in many applications like aerospace, ...
Significant grain refinement has been achieved in a cast Mg-based AZ91 alloy via large strain hot ro...
Improving the mechanical properties especially the high temperature properties of Mg-Al Mg alloy is ...
In this paper, grain refinement of pure magnesium using severe plastic deformation was investigated ...
Hot extruded (EX) AZ61 magnesium alloy was processed by the twist channel angular pressing (TCAP) me...
Equal channel angular pressing (ECAP) method was used for achieving very fine-grained structure and ...
Pure Mg and Mg alloys generally exhibit only limited ductilities at ambient temperatures. Experiment...
Magnesium alloys are very promising materials for automotive and aerospace applications due to their...
The magnesium alloy AZ31 was processed by severe hot rolling and annealing. This processing was opti...
A solution-treated AZ91 bulk material was deep-surface-rolled at room temperature to investigate the...
Equal-channel angular pressing (ECAP) was conducted on a Mg–0.55% Zr alloy at a temperature of 513 K...
Abstract Mechanical properties of AZ31B magnesium alloy were modified in this work by various proces...
Developing cost-effective magnesium alloys with high strength and good ductility is a long-standing ...
Mg is a metal with a very low density (=1.7 g/cm3). In general, however, it is difficult to form its...
Processing through the application of equal-channel angular pressing (ECAP) is recognized as one of ...
Abstract: Magnesium and its alloys have play an strategic role in many applications like aerospace, ...
Significant grain refinement has been achieved in a cast Mg-based AZ91 alloy via large strain hot ro...
Improving the mechanical properties especially the high temperature properties of Mg-Al Mg alloy is ...
In this paper, grain refinement of pure magnesium using severe plastic deformation was investigated ...
Hot extruded (EX) AZ61 magnesium alloy was processed by the twist channel angular pressing (TCAP) me...
Equal channel angular pressing (ECAP) method was used for achieving very fine-grained structure and ...
Pure Mg and Mg alloys generally exhibit only limited ductilities at ambient temperatures. Experiment...
Magnesium alloys are very promising materials for automotive and aerospace applications due to their...
The magnesium alloy AZ31 was processed by severe hot rolling and annealing. This processing was opti...
A solution-treated AZ91 bulk material was deep-surface-rolled at room temperature to investigate the...
Equal-channel angular pressing (ECAP) was conducted on a Mg–0.55% Zr alloy at a temperature of 513 K...