The results of experimental activity on friction stir welding (FSW) of aluminum alloys are reported. Butt joints of two different materials, namely AA2024-T4 and AA7075-T6, were investigated from a metallurgical point of view. Grain dimensions and insoluble particle densities were investigated both in the parent materials and in the joints. Furthermore, the effect of post-welding heat treatments on the joint strength was studied
Friction stir welding is a solid state joining process. High strength aluminum alloys are widely use...
Results of Friction Stir Welding (FSW) of aluminium 2024 are presented in this paper. Investigations...
The effect of the welding speed on the microstructure, local and overall mechanical properties of fr...
The results of experimental activity on friction stir welding (FSW) of aluminum alloys are reported....
In the paper the results of a wide experimental activity on friction stir welding (FSW) of aluminum ...
The microstructure and the mechanical properties of a 6056 aluminium alloy Friction Stir-Welded (FSW...
In this study, joining of dissimilar aluminum alloys 5059-H111 and 7075-1651 was carried out using f...
In this study, joining of dissimilar aluminum alloys 5059-H111 and 7075-T651 was carried out using f...
In the present study, four pairs of 6061 aluminium alloy workpieces with different surface roughness...
This study presents the microstructure of the aluminum A5083 butt joint surface after it has been jo...
The use of light weight materials for industrial applications is a driving force for the developmen...
Rising demand for improved fuel economy and structural efficiency are the key factors for use of alu...
Friction Stir Welding (FSW) is a solid-state welding process used for welding similar and dissimilar...
Butt welds formed by arc welding in inert gas with nonconsumable electrode (tungsten inert gas (TIG)...
This experimental study is done to investigate the effects of friction stir welding parameters (rota...
Friction stir welding is a solid state joining process. High strength aluminum alloys are widely use...
Results of Friction Stir Welding (FSW) of aluminium 2024 are presented in this paper. Investigations...
The effect of the welding speed on the microstructure, local and overall mechanical properties of fr...
The results of experimental activity on friction stir welding (FSW) of aluminum alloys are reported....
In the paper the results of a wide experimental activity on friction stir welding (FSW) of aluminum ...
The microstructure and the mechanical properties of a 6056 aluminium alloy Friction Stir-Welded (FSW...
In this study, joining of dissimilar aluminum alloys 5059-H111 and 7075-1651 was carried out using f...
In this study, joining of dissimilar aluminum alloys 5059-H111 and 7075-T651 was carried out using f...
In the present study, four pairs of 6061 aluminium alloy workpieces with different surface roughness...
This study presents the microstructure of the aluminum A5083 butt joint surface after it has been jo...
The use of light weight materials for industrial applications is a driving force for the developmen...
Rising demand for improved fuel economy and structural efficiency are the key factors for use of alu...
Friction Stir Welding (FSW) is a solid-state welding process used for welding similar and dissimilar...
Butt welds formed by arc welding in inert gas with nonconsumable electrode (tungsten inert gas (TIG)...
This experimental study is done to investigate the effects of friction stir welding parameters (rota...
Friction stir welding is a solid state joining process. High strength aluminum alloys are widely use...
Results of Friction Stir Welding (FSW) of aluminium 2024 are presented in this paper. Investigations...
The effect of the welding speed on the microstructure, local and overall mechanical properties of fr...