Purpose-This paper aims to summarize the microstructure characterization of parts that were produced using a hybrid manufacturing process consisting of laser metal deposition (LMD) and friction stir processing (FSP). This research was conducted to investigate the evolution of the microstructure following FSP and LMD and to study the possibility of producing or repairing parts with a forged-like microstructure using this hybrid technique. Design/methodology/approach-The microstructure of the nugget regions obtained in the substrate weld, stir over deposit and deposit over stir experiments was investigated. Findings-Highly refined grain size in the order of 1-2 μm was observed where FSP was performed over laser-deposited Ti-6Al-4V. Large equi...
Additive manufacturing (AM) presents huge potential in the present drive for sustainable manufacturi...
Use of Additive Manufactured (AM) parts for structural applications is currently limited due to thei...
Additive manufactured (AM) and, more specifically, selective laser melt (SLM) parts have huge potent...
Laser Metal Deposition (LMD) is an additive manufacturing technique for manufacturing complex near n...
Laser Metal Deposition (LMD) is an additive manufacturing technique for manufacturing complex near ...
Laser metal deposition (LMD) can form near net shaped components for aerospace applications. Ti-6Al-...
The low ductility of Ti6Al4V alloy manufactured by Selective Laser Melting (SLM) adversely impacts t...
The flexibility, material and time saving capabilities of metal additive manufacturing (AM) make it ...
Friction Stir Processing (FSP) of aluminium alloys has been used to modify and improve the microstru...
The low ductility of Ti6Al4V alloy manufactured by Selective Laser Melting (SLM) adversely impacts t...
Great expectations have been placed in the additive manufacturing (AM) technologies, coming from cou...
The friction stir technique has potential to be useful in the additive manufacturing field. Indeed, ...
Friction-stir processing (FSP) is an emerging surface-engineering technology that can locally elimin...
Friction stir processing (FSP) is a new solid state processing technique that can locally eliminate ...
Friction stir processing (FSP) is an outgrowth of Friction stir welding (FSW) that locally manipulat...
Additive manufacturing (AM) presents huge potential in the present drive for sustainable manufacturi...
Use of Additive Manufactured (AM) parts for structural applications is currently limited due to thei...
Additive manufactured (AM) and, more specifically, selective laser melt (SLM) parts have huge potent...
Laser Metal Deposition (LMD) is an additive manufacturing technique for manufacturing complex near n...
Laser Metal Deposition (LMD) is an additive manufacturing technique for manufacturing complex near ...
Laser metal deposition (LMD) can form near net shaped components for aerospace applications. Ti-6Al-...
The low ductility of Ti6Al4V alloy manufactured by Selective Laser Melting (SLM) adversely impacts t...
The flexibility, material and time saving capabilities of metal additive manufacturing (AM) make it ...
Friction Stir Processing (FSP) of aluminium alloys has been used to modify and improve the microstru...
The low ductility of Ti6Al4V alloy manufactured by Selective Laser Melting (SLM) adversely impacts t...
Great expectations have been placed in the additive manufacturing (AM) technologies, coming from cou...
The friction stir technique has potential to be useful in the additive manufacturing field. Indeed, ...
Friction-stir processing (FSP) is an emerging surface-engineering technology that can locally elimin...
Friction stir processing (FSP) is a new solid state processing technique that can locally eliminate ...
Friction stir processing (FSP) is an outgrowth of Friction stir welding (FSW) that locally manipulat...
Additive manufacturing (AM) presents huge potential in the present drive for sustainable manufacturi...
Use of Additive Manufactured (AM) parts for structural applications is currently limited due to thei...
Additive manufactured (AM) and, more specifically, selective laser melt (SLM) parts have huge potent...