A Mg–Zn–Zr alloy was processed by high-pressure torsion for up to 2 turns at room temperature to produce significant grain refinement together with enhanced plasticity and strength. Measurements were performed to determine the strain-rate sensitivity, shear yield strength and activation volume as a function of the processing conditions. The results suggest there is a significant contribution from grain boundary sliding to the flow process and the onset of plasticity is associated with heterogeneous dislocation nucleation
Processing magnesium alloy by High-Pressure Torsion (HPT) is a technique used successfully to refine...
The novel Mg-8.2Gd-3.8Y-1.0Zn-0.4Zr alloy with high content of rare earth elements has been processe...
Magnesium and its alloys have attracted significant attention in recent years because they display h...
A Mg-Zn-Zr alloy was processed by high-pressure torsion for up to 2 turns at room temperature to pro...
A commercial magnesium AZ31 alloy was processed by high-pressure torsion (HPT) through 5 turns at 45...
Experiments were conducted on an AZ61 magnesium alloy to evaluate the microstructural characteristic...
Experiments were conducted on an AZ61 magnesium alloy to evaluate the microstructural characteristic...
An AZ91 magnesium alloy (Mg-9%, Al-1% Zn) was processed by high-pressure torsion (HPT) after solutio...
A magnesium AZ80 alloy with an initial grain size of ~250 μm was processed by high-pressure torsion ...
AbstractAn AZ80 magnesium alloy with an initial grain size of ∼25μm and a hardness of Hv≈63 was proc...
Experiments were conducted on a Mg–9% Al alloy to evaluate the microstructural characteristics and t...
High-pressure torsion provides the opportunity to introduce significant plastic strain at room tempe...
An investigation was conducted on a magnesium AZ31 alloy to determine whether the deformation proces...
The mechanical behavior of an AZ31 magnesium alloy processed by high-pressure torsion (HPT) was eval...
An AZ31 magnesium alloy was processed by high-pressure torsion (HPT) at room temperature under an im...
Processing magnesium alloy by High-Pressure Torsion (HPT) is a technique used successfully to refine...
The novel Mg-8.2Gd-3.8Y-1.0Zn-0.4Zr alloy with high content of rare earth elements has been processe...
Magnesium and its alloys have attracted significant attention in recent years because they display h...
A Mg-Zn-Zr alloy was processed by high-pressure torsion for up to 2 turns at room temperature to pro...
A commercial magnesium AZ31 alloy was processed by high-pressure torsion (HPT) through 5 turns at 45...
Experiments were conducted on an AZ61 magnesium alloy to evaluate the microstructural characteristic...
Experiments were conducted on an AZ61 magnesium alloy to evaluate the microstructural characteristic...
An AZ91 magnesium alloy (Mg-9%, Al-1% Zn) was processed by high-pressure torsion (HPT) after solutio...
A magnesium AZ80 alloy with an initial grain size of ~250 μm was processed by high-pressure torsion ...
AbstractAn AZ80 magnesium alloy with an initial grain size of ∼25μm and a hardness of Hv≈63 was proc...
Experiments were conducted on a Mg–9% Al alloy to evaluate the microstructural characteristics and t...
High-pressure torsion provides the opportunity to introduce significant plastic strain at room tempe...
An investigation was conducted on a magnesium AZ31 alloy to determine whether the deformation proces...
The mechanical behavior of an AZ31 magnesium alloy processed by high-pressure torsion (HPT) was eval...
An AZ31 magnesium alloy was processed by high-pressure torsion (HPT) at room temperature under an im...
Processing magnesium alloy by High-Pressure Torsion (HPT) is a technique used successfully to refine...
The novel Mg-8.2Gd-3.8Y-1.0Zn-0.4Zr alloy with high content of rare earth elements has been processe...
Magnesium and its alloys have attracted significant attention in recent years because they display h...