This work presents the evaluation of the interlayer temperature (IT) with travel speed (TS) combined effect for a given wire feed speed (WFS) on operational, geometrical, and metallurgical features of thin walls with the same width deposited by wire arc additive manufacturing (WAAM) with a low alloy steel, using or not active cooling. A preliminary experimental design was carried out to define a range of IT that could prevent the molten pool from running down and, then, be used in the main experimental design. The main tests were planned and performed to find different IT and TS combinations for a given WFS capable of depositing walls with the same target effective wall width. After selecting the parameters, six walls were deposited, three ...
Purpose: This paper aims to assess the combined effect of the Cold Metal Transfer (CMT) advanced pro...
The thermal behavior in WAAM process is a significant cause for thermal stress. In this paper, a 3D ...
Wire arc additive manufacturing (WAAM) technique has revealed the potential of replacing existing ae...
This work presents the evaluation of the interlayer temperature (IT) with travel speed (TS) combined...
The present paper aimed at assessing the effect of two thermal management approaches on geometry and...
The present paper aimed at assessing the effect of two thermal management approaches on geometry and...
Wire arc additive manufacturing (WAAM) is suitable to fabricate large components because of its high...
Relatively high heat input and heat accumulation are treated as critical challenges to affect the qu...
The purpose of the study was to propose a strategy to assess the potential reduction of the producti...
The purpose of the study was to propose a strategy to assess the potential reduction of the producti...
Wire and arc-based additive manufacturing (WAAM) is a rapidly developing technology which employs a ...
none6noWire-and-arc additive manufacturing (WAAM) is an innovative technology that involves depositi...
Wire arc additive manufacturing is a metal additive manufacturing technique that allows the fabricat...
To achieve improved microstructure and mechanical properties, an innovative wire arc additive manufa...
Wire arc additive manufacturing (WAAM) direct energy deposition is used to process two different dup...
Purpose: This paper aims to assess the combined effect of the Cold Metal Transfer (CMT) advanced pro...
The thermal behavior in WAAM process is a significant cause for thermal stress. In this paper, a 3D ...
Wire arc additive manufacturing (WAAM) technique has revealed the potential of replacing existing ae...
This work presents the evaluation of the interlayer temperature (IT) with travel speed (TS) combined...
The present paper aimed at assessing the effect of two thermal management approaches on geometry and...
The present paper aimed at assessing the effect of two thermal management approaches on geometry and...
Wire arc additive manufacturing (WAAM) is suitable to fabricate large components because of its high...
Relatively high heat input and heat accumulation are treated as critical challenges to affect the qu...
The purpose of the study was to propose a strategy to assess the potential reduction of the producti...
The purpose of the study was to propose a strategy to assess the potential reduction of the producti...
Wire and arc-based additive manufacturing (WAAM) is a rapidly developing technology which employs a ...
none6noWire-and-arc additive manufacturing (WAAM) is an innovative technology that involves depositi...
Wire arc additive manufacturing is a metal additive manufacturing technique that allows the fabricat...
To achieve improved microstructure and mechanical properties, an innovative wire arc additive manufa...
Wire arc additive manufacturing (WAAM) direct energy deposition is used to process two different dup...
Purpose: This paper aims to assess the combined effect of the Cold Metal Transfer (CMT) advanced pro...
The thermal behavior in WAAM process is a significant cause for thermal stress. In this paper, a 3D ...
Wire arc additive manufacturing (WAAM) technique has revealed the potential of replacing existing ae...