This study explores the evolution of plasticity, strain-rate sensitivity and the underlying deformation mechanism of a Zn–22% Al eutectoid alloy during high-pressure torsion processing. The experiments reveal an optimal torsional straining condition for achieving the largest plasticity; beyond this condition the strain-rate sensitivity decreases and activation volume increases. The results are discussed in terms of changes in the microstructure and the underlying deformation mechanis
The processing of metals through the application of high-pressure torsion (HPT) provides the potenti...
Experiments were conducted on two different two-phase alloys, the Al-33% Cu eutectic and the Zn-22% ...
The processing of metals through the application of severe plastic deformation provides the potentia...
This study explores the evolution of plasticity, strain-rate sensitivity and the underlying deformat...
Experiments were conducted to examine the evolution of microstructure and mechanical properties in a...
Severe plastic deformation (SPD) is an attractive processing method for refining microstructures of ...
Experiments were conducted to evaluate the microstructural evolution occurring in the Zn-22% Al eute...
Experiments were conducted to evaluate the microstructural evolution occurring in the Zn–22% Al eute...
A Zn-22% Al eutectoid alloy was processed by high-pressure torsion (HPT) for 1.3 and 5 turns at room...
The processing of metals through the application of high-pressure torsion (HPT) provides the potenti...
The processing of metals through the application of high-pressure torsion (HPT) provides the potenti...
Disks of the Zn–22% Al eutectoid alloy were processed in conventional monotonic high-pressure torsio...
Disks of the Zn-22% Al eutectoid alloy were processed in conventional monotonic high-pressure torsio...
A Zn–22% Al eutectoid alloy was processed by high-pressure torsion (HPT) for 1, 3 and 5 turns at roo...
In this work, super saturated solid solution Al-30 wt%Zn alloy was subjected to high pressure torsio...
The processing of metals through the application of high-pressure torsion (HPT) provides the potenti...
Experiments were conducted on two different two-phase alloys, the Al-33% Cu eutectic and the Zn-22% ...
The processing of metals through the application of severe plastic deformation provides the potentia...
This study explores the evolution of plasticity, strain-rate sensitivity and the underlying deformat...
Experiments were conducted to examine the evolution of microstructure and mechanical properties in a...
Severe plastic deformation (SPD) is an attractive processing method for refining microstructures of ...
Experiments were conducted to evaluate the microstructural evolution occurring in the Zn-22% Al eute...
Experiments were conducted to evaluate the microstructural evolution occurring in the Zn–22% Al eute...
A Zn-22% Al eutectoid alloy was processed by high-pressure torsion (HPT) for 1.3 and 5 turns at room...
The processing of metals through the application of high-pressure torsion (HPT) provides the potenti...
The processing of metals through the application of high-pressure torsion (HPT) provides the potenti...
Disks of the Zn–22% Al eutectoid alloy were processed in conventional monotonic high-pressure torsio...
Disks of the Zn-22% Al eutectoid alloy were processed in conventional monotonic high-pressure torsio...
A Zn–22% Al eutectoid alloy was processed by high-pressure torsion (HPT) for 1, 3 and 5 turns at roo...
In this work, super saturated solid solution Al-30 wt%Zn alloy was subjected to high pressure torsio...
The processing of metals through the application of high-pressure torsion (HPT) provides the potenti...
Experiments were conducted on two different two-phase alloys, the Al-33% Cu eutectic and the Zn-22% ...
The processing of metals through the application of severe plastic deformation provides the potentia...