The article presents the influence of stationary plastic deformation, using the equal channel angular pressing (ECAP) method, on the structure and properties of an aluminium alloy with 3% magnesium content. In order to investigate changes in the structure and substructure, light microscopy and transmission electron microscopy were used. The influence of plastic deformation was determined by hardness measurement using the Vickers method. The results of the investigation show that, even after one ECAP, it is possible to decrease grain size to a range of 30 –70 nm, and increase the mechanical properties by nearly 90%. It was also found that the additional twist angle of the die has a minor effect on the properties and structure of ...
Equal channel angular pressing (ECAP) is one of popular techniques of severe plastic deformation (SP...
The present study was initiated to investigate the influence of an ECAP die on the microstructure ev...
Magnesium alloys are very promising materials for automotive and aerospace applications due to their...
In the present work, the effect of severe plastic deformation (SPD) on the mechanical properties of ...
Article is devoted to analysis of ECAP (Equal Channel Angular Pressing) method, which uses a high de...
This paper reports on an experiment to assess the influence of plastic deformation on the microstruc...
In order to determine the effect of increased magnesium addition on the strengthening behaviour duri...
An Al-7075 aluminum alloy and a ZK60 magnesium alloy were processed by acombination of equal-channel...
Twist channel angular pressing (TCAP), the severe plastic deformation (SPD) technology developed rec...
Equal channel angular pressing technique (ECAP) was used before and after solution heat treatment to...
Incremental equal channel angular pressing (I-ECAP) is a severe plastic deformation process used to ...
The twist channel angular pressing (TCAP) method was developed with the aim to increase the effectiv...
In the present research, commercial Al-3%Mg aluminium alloy was subjected to the ECAP processing usi...
Pure Mg and Mg alloys generally exhibit only limited ductilities at ambient temperatures. Experiment...
Polycrystalline aluminium Al99.5 was deformed through the combination of equal-channel angular press...
Equal channel angular pressing (ECAP) is one of popular techniques of severe plastic deformation (SP...
The present study was initiated to investigate the influence of an ECAP die on the microstructure ev...
Magnesium alloys are very promising materials for automotive and aerospace applications due to their...
In the present work, the effect of severe plastic deformation (SPD) on the mechanical properties of ...
Article is devoted to analysis of ECAP (Equal Channel Angular Pressing) method, which uses a high de...
This paper reports on an experiment to assess the influence of plastic deformation on the microstruc...
In order to determine the effect of increased magnesium addition on the strengthening behaviour duri...
An Al-7075 aluminum alloy and a ZK60 magnesium alloy were processed by acombination of equal-channel...
Twist channel angular pressing (TCAP), the severe plastic deformation (SPD) technology developed rec...
Equal channel angular pressing technique (ECAP) was used before and after solution heat treatment to...
Incremental equal channel angular pressing (I-ECAP) is a severe plastic deformation process used to ...
The twist channel angular pressing (TCAP) method was developed with the aim to increase the effectiv...
In the present research, commercial Al-3%Mg aluminium alloy was subjected to the ECAP processing usi...
Pure Mg and Mg alloys generally exhibit only limited ductilities at ambient temperatures. Experiment...
Polycrystalline aluminium Al99.5 was deformed through the combination of equal-channel angular press...
Equal channel angular pressing (ECAP) is one of popular techniques of severe plastic deformation (SP...
The present study was initiated to investigate the influence of an ECAP die on the microstructure ev...
Magnesium alloys are very promising materials for automotive and aerospace applications due to their...