Specimens of Al–Mg alloy 1560 of ultrafine-grained structure were obtained by the method of severe plastic deformation based on multiple equal-channel angular pressing. Impact on physical and mechanical properties of the processed material and fracture pattern of specimens was studied. Tensile tests showed an increase of the offset yield strength and resistance to rupture with decrease in the ultimate deformation. The obtained specimens have increased microhardness values compared to the initial ones. It was established that the last cycle of pressing determines the structural orientation of macroscopic shear bands occurring at an angle to the specimen longitudinal axis while passing connection of channels. It affects the physical and mecha...
An AA6005 Al–Mg–Si alloy was used to investigate the evolution of microhardness and microstructure o...
Ultrafine-grained materials, having grain sizes in the submicrometer or nanometer range, may be read...
Aluminum 5456-H116 has high as-welded strength, is formable, and highly corrosion resistant, however...
Specimens of Al–Mg alloy 1560 of ultrafine-grained structure were obtained by the method of severe p...
An ultrafine grained Al–Mg–Si alloy was prepared by severe plastic deformation using the equal-chann...
2014-07-07A commercial Al-7075 alloy was processed by severe plastic deformation (SPD) techniques, n...
In the present research, equal channel angular pressing (ECAP) was conducted. The defectness degree ...
Annealed samples of commercial purity aluminium (1050) were processed by Equal Channel Angular Press...
A review is presented about recent results obtained on properties of ultrafine grained structural al...
The effect of equal channel angular pressing (ECAP) on the microstructure and mechanical properties ...
A commercial Al-7075 aluminum alloy was used to investigate the significance of the saturation hardn...
In this study, an Al-Mg-Si alloy was processed using via Incremental Equal Channel Angular Pressing ...
This paper reports on an experiment to assess the influence of plastic deformation on the microstruc...
The microstructure evolution under elevated plastic deformations was investigated by means of transm...
This work presents a study related to the achievement of a nanometric structure in AA3103, employing...
An AA6005 Al–Mg–Si alloy was used to investigate the evolution of microhardness and microstructure o...
Ultrafine-grained materials, having grain sizes in the submicrometer or nanometer range, may be read...
Aluminum 5456-H116 has high as-welded strength, is formable, and highly corrosion resistant, however...
Specimens of Al–Mg alloy 1560 of ultrafine-grained structure were obtained by the method of severe p...
An ultrafine grained Al–Mg–Si alloy was prepared by severe plastic deformation using the equal-chann...
2014-07-07A commercial Al-7075 alloy was processed by severe plastic deformation (SPD) techniques, n...
In the present research, equal channel angular pressing (ECAP) was conducted. The defectness degree ...
Annealed samples of commercial purity aluminium (1050) were processed by Equal Channel Angular Press...
A review is presented about recent results obtained on properties of ultrafine grained structural al...
The effect of equal channel angular pressing (ECAP) on the microstructure and mechanical properties ...
A commercial Al-7075 aluminum alloy was used to investigate the significance of the saturation hardn...
In this study, an Al-Mg-Si alloy was processed using via Incremental Equal Channel Angular Pressing ...
This paper reports on an experiment to assess the influence of plastic deformation on the microstruc...
The microstructure evolution under elevated plastic deformations was investigated by means of transm...
This work presents a study related to the achievement of a nanometric structure in AA3103, employing...
An AA6005 Al–Mg–Si alloy was used to investigate the evolution of microhardness and microstructure o...
Ultrafine-grained materials, having grain sizes in the submicrometer or nanometer range, may be read...
Aluminum 5456-H116 has high as-welded strength, is formable, and highly corrosion resistant, however...