An investigation was initiated to evaluate the feasibility of using equal-channel angular pressing (ECAP) to obtain high superplastic elongations in the AZ31 alloy with a back pressure producing a bimodal grain structure. Processing by ECAP was performed using a die with an angle of 90 ° between the two parts of the channel and a ram velocity of 15-20 mm/sec. Some pressing were conducted with a back-pressure by making use of a backward punch in the exit channel of the die. Molybdenum disulphide and a graphite spray were used as lubricants and billets were pressed using processing route B c in which each billet is rotated by 90 °. The pressing were conducted at temperatures in the range from 423 to 523 K and every billet was quenched...
Equal-channel angular pressing provides an opportunity for refining the grain structure and introduc...
Experiments show that the magnesium AZ31 (Mg-3 pct Al-1 pct Zn) alloy exhibits excellent superplasti...
It is well known that Equal-Channel Angular Pressing (ECAP) introduces an ultrafine grain size and l...
Excellent superplastic elongations (in excess of 1,200%) were achieved in a commercial cast AZ31 all...
The superplastic properties of metallic materials are associated with the length scale and with the ...
The extrusion/equal channel angular pressing (EX-ECAP) processing procedure, in which magnesium-base...
AbstractMagnesium base alloys have reached an important development as structural materials the last...
Experiments were conducted on a commercial AZ61 alloy to evaluate the potential for achieving an ult...
Magnesium alloys processed by equal-channel angular pressing often exhibit superplastic elongations ...
The imposition of severe plastic straining on an Al–3% Mg–0.2% Sc alloy through equal-channel angula...
Magnesium base alloys have reached an important development as structural materials the last years d...
Experiments were conducted on the magnesium AZ31 alloy to evaluate the significance of conducting eq...
An extruded ZK60 magnesium alloy was processed by equal-channel angular pressing (ECAP) and then tes...
Equal-channel angular pressing (ECAP) was applied for grain refinement of Al-3%Mg0.2%Fe and Al-3%Mg-...
Equal-channel angular pressing (ECAP) is a convenient processing method for refining the grain size ...
Equal-channel angular pressing provides an opportunity for refining the grain structure and introduc...
Experiments show that the magnesium AZ31 (Mg-3 pct Al-1 pct Zn) alloy exhibits excellent superplasti...
It is well known that Equal-Channel Angular Pressing (ECAP) introduces an ultrafine grain size and l...
Excellent superplastic elongations (in excess of 1,200%) were achieved in a commercial cast AZ31 all...
The superplastic properties of metallic materials are associated with the length scale and with the ...
The extrusion/equal channel angular pressing (EX-ECAP) processing procedure, in which magnesium-base...
AbstractMagnesium base alloys have reached an important development as structural materials the last...
Experiments were conducted on a commercial AZ61 alloy to evaluate the potential for achieving an ult...
Magnesium alloys processed by equal-channel angular pressing often exhibit superplastic elongations ...
The imposition of severe plastic straining on an Al–3% Mg–0.2% Sc alloy through equal-channel angula...
Magnesium base alloys have reached an important development as structural materials the last years d...
Experiments were conducted on the magnesium AZ31 alloy to evaluate the significance of conducting eq...
An extruded ZK60 magnesium alloy was processed by equal-channel angular pressing (ECAP) and then tes...
Equal-channel angular pressing (ECAP) was applied for grain refinement of Al-3%Mg0.2%Fe and Al-3%Mg-...
Equal-channel angular pressing (ECAP) is a convenient processing method for refining the grain size ...
Equal-channel angular pressing provides an opportunity for refining the grain structure and introduc...
Experiments show that the magnesium AZ31 (Mg-3 pct Al-1 pct Zn) alloy exhibits excellent superplasti...
It is well known that Equal-Channel Angular Pressing (ECAP) introduces an ultrafine grain size and l...