AbstractIn this paper, a detailed investigation has been carried out to find out the impact of the process parameters including Tool rotational speed, welding direction at constant axial force and with a taper cylindrical pin profiled HSS tool during the Friction stir welding (FSW) of AZ31B magnesium alloy lap joints. This paper evaluates & examines in an elaborate manner, the influence of these FSW parameters in the microstructure & mechanical properties of AZ31B magnesium alloy. In short, AZ31B Mg alloys were friction stir welded by varying several different process parameters and the effects of these parameters on the joint quality, microstructure & mechanical properties were discussed comprehensively. This paper also experimentally prov...
Friction stir welding developed in early 90’s is a refreshing approach to the joining of different k...
Joining of magnesium alloys was successfully performed by friction stir welding (FSW) technique. Thi...
[[abstract]]Due to their lightweight, high specific stiffness and specific strength, magnesium alloy...
AbstractIn this paper, a detailed investigation has been carried out to find out the impact of the p...
AbstractIn this investigation, the effect of friction stir welding (FSW) parameters such as tool mat...
AbstractIn this investigation an attempt has been made to study the effect of friction stir welding ...
The present study investigates the influence of tool pin profiles on microstructure and mechanical p...
This study was aimed at characterizing the microstructure, texture and tensile properties of a frict...
Magnesium alloys have been fast catching up their attention in applications where both lightweight a...
The effects of tool rotational speed and probe length on lap joint quality of friction stir welded 2...
In the friction stir welding (FSW) process, the final performance of weld joints is determined by mi...
In this investigation, the effect of friction stir welding (FSW) parameters such as tool pin profile...
The present work involves friction stir welding of AZ31B magnesium alloy plates by using copper as t...
Friction stir welding (FSW) is an attractive option to join magnesium alloys, one of the lightest me...
Friction Stir Welding (FSW) has been arousing a continuously increasing interest among joining proce...
Friction stir welding developed in early 90’s is a refreshing approach to the joining of different k...
Joining of magnesium alloys was successfully performed by friction stir welding (FSW) technique. Thi...
[[abstract]]Due to their lightweight, high specific stiffness and specific strength, magnesium alloy...
AbstractIn this paper, a detailed investigation has been carried out to find out the impact of the p...
AbstractIn this investigation, the effect of friction stir welding (FSW) parameters such as tool mat...
AbstractIn this investigation an attempt has been made to study the effect of friction stir welding ...
The present study investigates the influence of tool pin profiles on microstructure and mechanical p...
This study was aimed at characterizing the microstructure, texture and tensile properties of a frict...
Magnesium alloys have been fast catching up their attention in applications where both lightweight a...
The effects of tool rotational speed and probe length on lap joint quality of friction stir welded 2...
In the friction stir welding (FSW) process, the final performance of weld joints is determined by mi...
In this investigation, the effect of friction stir welding (FSW) parameters such as tool pin profile...
The present work involves friction stir welding of AZ31B magnesium alloy plates by using copper as t...
Friction stir welding (FSW) is an attractive option to join magnesium alloys, one of the lightest me...
Friction Stir Welding (FSW) has been arousing a continuously increasing interest among joining proce...
Friction stir welding developed in early 90’s is a refreshing approach to the joining of different k...
Joining of magnesium alloys was successfully performed by friction stir welding (FSW) technique. Thi...
[[abstract]]Due to their lightweight, high specific stiffness and specific strength, magnesium alloy...