To achieve improved microstructure and mechanical properties, an innovative wire arc additive manufacturing (WAAM) process with forced interpass cooling using compressed CO2 was employed in this study to fabricate Ti6Al4V thin-walled structures. The effects of various interpass temperatures and rapid forced cooling on deposition geometry, surface oxidation, microstructural evolution, and mechanical properties of the fabricated part were investigated by laser profilometry, optical microscopy (OM), scanning electron microscopy (SEM), hardness testing and mechanical tensile testing. Results show that the microstructural evolution and mechanical properties of the deposited metal are not greatly affected by an increasing interpass temperature, h...
As one of the most common Titanium alloys, Ti-6Al-4V faces new challenges concerning the ecological ...
Wire arc additive manufacturing (WAAM) technique has revealed the potential of replacing existing ae...
As one of the most common Titanium alloys, Ti-6Al-4V faces new challenges concerning the ecological ...
In this study, active interpass cooling using compressed CO2 was innovatively employed in the wire a...
Complex thermal behaviour during fabrication plays an import role in the geometrical formation and m...
Complex thermal behaviour during fabrication plays an import role in the geometrical formation and m...
Relatively high heat input and heat accumulation are treated as critical challenges to affect the qu...
In this study, active interpass cooling using compressed CO2 was innovatively employed in the wire a...
Wire arc additive manufacturing (WAAM) is a novel manufacturing technique by which high strength met...
Wire arc additive manufacturing (WAAM) has been widely used due to its advantages of low cost and hi...
Wire arc additive manufacturing (WAAM) is suitable to fabricate large components because of its high...
The paper deals with the main formation patterns of structure and properties of a titanium alloy of ...
none6noWire-and-arc additive manufacturing (WAAM) is an innovative technology that involves depositi...
Wire Arc Additive Manufacturing (WAAM) is a promising manufacturing process for producing large aero...
Wire + Arc Additive Manufacturing (WAAM) is a promising manufacturing process for producing large ae...
As one of the most common Titanium alloys, Ti-6Al-4V faces new challenges concerning the ecological ...
Wire arc additive manufacturing (WAAM) technique has revealed the potential of replacing existing ae...
As one of the most common Titanium alloys, Ti-6Al-4V faces new challenges concerning the ecological ...
In this study, active interpass cooling using compressed CO2 was innovatively employed in the wire a...
Complex thermal behaviour during fabrication plays an import role in the geometrical formation and m...
Complex thermal behaviour during fabrication plays an import role in the geometrical formation and m...
Relatively high heat input and heat accumulation are treated as critical challenges to affect the qu...
In this study, active interpass cooling using compressed CO2 was innovatively employed in the wire a...
Wire arc additive manufacturing (WAAM) is a novel manufacturing technique by which high strength met...
Wire arc additive manufacturing (WAAM) has been widely used due to its advantages of low cost and hi...
Wire arc additive manufacturing (WAAM) is suitable to fabricate large components because of its high...
The paper deals with the main formation patterns of structure and properties of a titanium alloy of ...
none6noWire-and-arc additive manufacturing (WAAM) is an innovative technology that involves depositi...
Wire Arc Additive Manufacturing (WAAM) is a promising manufacturing process for producing large aero...
Wire + Arc Additive Manufacturing (WAAM) is a promising manufacturing process for producing large ae...
As one of the most common Titanium alloys, Ti-6Al-4V faces new challenges concerning the ecological ...
Wire arc additive manufacturing (WAAM) technique has revealed the potential of replacing existing ae...
As one of the most common Titanium alloys, Ti-6Al-4V faces new challenges concerning the ecological ...