Friction stir processing was carried out on the Al-Mg-Mn alloy to achieve ultrafine grained microstructure. The evolution of microstructure and micro-texture was studied in different regions of the deformed sample, namely nugget zone, thermo-mechanically affected zone (TMAZ) and base metal. The average grain sizes of the nugget zone, TMAZ and base metal are 1.5 mu m +/- 0.5 mu m, 15 mu m +/- 8 mu m, and 80 mu m +/- 10 mu m, respectively. The TMAZ exhibits excessive deformation banding structure and sub-grain formation. The orientation gradient within the sub-grain is dependent on grain size, orientation, and distance from nugget zone. The microstructure was partitioned based on the grain orientation spread and grain size values to separate ...
The feasibility of applying friction stir processing (FSP) to locally homogenise and to refine the m...
In the present study the friction stir processing (FSP), as an effective thermomechanical processing...
Magnesium alloys are known to be one of the lightest structural alloys and hence they are of interes...
In the present study, microstructure and texture development during single and multiple pass frictio...
In the present study, microstructure and texture development during single and multiple pass frictio...
In the present study, microstructure and texture development during single and multiple pass frictio...
Microstructure and crystallographic texture evolution during single- and multiple-pass friction stir...
Microstructure and crystallographic texture evolution during single- and multiple-pass friction stir...
Friction-stir processing (FSP) has been proven as a successful method for the grain refinement of hi...
Friction-stir processing (FSP) has been proven as a successful method for the grain refinement of hi...
This study involved edge regions of a friction stir processed (FSP) magnesium alloy (AZ31). Interlea...
Friction stir processing caused obvious grain refinement and texture modification for the experiment...
In the current study, correlation of microstructure evolution with bulk crystallographic texture for...
In the current study, correlation of microstructure evolution with bulk crystallographic texture for...
The feasibility of applying friction stir processing (FSP) to locally homogenise and to refine the m...
The feasibility of applying friction stir processing (FSP) to locally homogenise and to refine the m...
In the present study the friction stir processing (FSP), as an effective thermomechanical processing...
Magnesium alloys are known to be one of the lightest structural alloys and hence they are of interes...
In the present study, microstructure and texture development during single and multiple pass frictio...
In the present study, microstructure and texture development during single and multiple pass frictio...
In the present study, microstructure and texture development during single and multiple pass frictio...
Microstructure and crystallographic texture evolution during single- and multiple-pass friction stir...
Microstructure and crystallographic texture evolution during single- and multiple-pass friction stir...
Friction-stir processing (FSP) has been proven as a successful method for the grain refinement of hi...
Friction-stir processing (FSP) has been proven as a successful method for the grain refinement of hi...
This study involved edge regions of a friction stir processed (FSP) magnesium alloy (AZ31). Interlea...
Friction stir processing caused obvious grain refinement and texture modification for the experiment...
In the current study, correlation of microstructure evolution with bulk crystallographic texture for...
In the current study, correlation of microstructure evolution with bulk crystallographic texture for...
The feasibility of applying friction stir processing (FSP) to locally homogenise and to refine the m...
The feasibility of applying friction stir processing (FSP) to locally homogenise and to refine the m...
In the present study the friction stir processing (FSP), as an effective thermomechanical processing...
Magnesium alloys are known to be one of the lightest structural alloys and hence they are of interes...