A356-T6 cast aluminum alloy is a light weight structural material, but fatigue crack initiates and propagates from a casting defect leading to final fracture. Thus it is important to eliminate casting defects. In this study, friction stir processing (FSP) was applied to A356-T6, in which rotating tool with probe and shoulder was plunged into the material and travels along the longitudinal direction to induce severe plastic deformation, resulting in the modification of microstructure. Two different processing conditions with low and high tool rotational speeds were tried and subsequently fully reversed fatigue tests were performed to investigate the effect of processing conditions on the crack initiation and propagation behavior. The f...
Aluminium alloys are used for important applications in reducing the weight of the component and str...
In this study, fatigue behavior of surface finished and precorroded friction stir welded (FSW) speci...
The aim of this study is to investigate the effects of the rotation speed of casting and T6 heat tre...
A356-T6 cast aluminum alloy is a light weight structural material, but fatigue crack initiates and p...
This research work was initiated to develop FSP as a tool to locally modify the microstructures in v...
Metal fatigue is a recurring problem for metallurgists and materials engineers, especially in struct...
Friction Stir Welding (FSW) is a new solid-state welding process that shows great promise for use in...
Cast A356 alloys prepared by friction stir processing (FSP) were subjected to fatigue investigation....
The grain size of high strength 7075 hot-rolled aluminum plates was refined by a friction stir proce...
The influence of microstructure on fatigue behavior was investigated on a friction stirred channel s...
The following chapter study the friction stir processes (FSP) is used to improve the surface charact...
The following chapter study the friction stir processes (FSP) is used to improve the surface charact...
The present work studies the crack behavior along the surface of the friction stir welded (FSW) join...
Aluminium alloys are used for important applications in reducing the weight of the component and str...
In this study, the effect of specimen thickness on the fatigue crack growth behavior of the friction...
Aluminium alloys are used for important applications in reducing the weight of the component and str...
In this study, fatigue behavior of surface finished and precorroded friction stir welded (FSW) speci...
The aim of this study is to investigate the effects of the rotation speed of casting and T6 heat tre...
A356-T6 cast aluminum alloy is a light weight structural material, but fatigue crack initiates and p...
This research work was initiated to develop FSP as a tool to locally modify the microstructures in v...
Metal fatigue is a recurring problem for metallurgists and materials engineers, especially in struct...
Friction Stir Welding (FSW) is a new solid-state welding process that shows great promise for use in...
Cast A356 alloys prepared by friction stir processing (FSP) were subjected to fatigue investigation....
The grain size of high strength 7075 hot-rolled aluminum plates was refined by a friction stir proce...
The influence of microstructure on fatigue behavior was investigated on a friction stirred channel s...
The following chapter study the friction stir processes (FSP) is used to improve the surface charact...
The following chapter study the friction stir processes (FSP) is used to improve the surface charact...
The present work studies the crack behavior along the surface of the friction stir welded (FSW) join...
Aluminium alloys are used for important applications in reducing the weight of the component and str...
In this study, the effect of specimen thickness on the fatigue crack growth behavior of the friction...
Aluminium alloys are used for important applications in reducing the weight of the component and str...
In this study, fatigue behavior of surface finished and precorroded friction stir welded (FSW) speci...
The aim of this study is to investigate the effects of the rotation speed of casting and T6 heat tre...