In this study, a physics-based analytical method was proposed for the prediction of upper surface roughness in laser powder bed fusion (LPBF). The temperature distribution and molten pool shape in the melting process were first predicted by an analytical thermal model. The cap area of the solidified molten pool was assumed to be half-elliptical. Based on this assumption and the principle of mass conservation, the cap height and the specific profile of the cap area were obtained. The transverse overlapping pattern of adjacent molten pools of upper layer was then obtained, with given hatch space. The analytical expression of the top surface profile was obtained after putting this overlapping pattern into a 2D coordinate system. The expression...
Laser powder bed fusion (L-PBF) process has had a rapid growth in the industrial fields because of ...
AbstractThe development of additive manufacturing has allowed for increased flexibility and complexi...
Surface roughness of laser powder bed fusion (L-PBF) printed overhang regions is a major contributor...
Modelling the thermal behaviour of the melt pool produced in Laser Powder-Bed Fusion (L-PBF) process...
This work proposed a computationally efficient analytical modeling strategy to calculate the product...
In this paper, we propose a model to predict the average surface roughness (Sa) and analyse the effe...
In this paper, we propose a model to predict the average surface roughness (Sa) and analyse the effe...
In this paper, we propose a model to predict the average surface roughness (Sa) and analyse the effe...
Additively manufactured metal components are preferred in the industries that need to be reached hig...
When reporting surface quality, the roughest surface is a reference for the measurements. In LPBF du...
This paper proposes analytical modeling methods for the prediction of balling, lack-of-fusion and ke...
When reporting surface quality, the roughest surface is a reference for the measurements. In LPBF du...
AbstractOne problematic task in the laser-based powder bed fusion (LB-PBF) process is the estimation...
Abstract When reporting surface quality, the roughest surface is a reference for the m...
One problematic task in the laser-based powder bed fusion (LB-PBF) process is the estimation of melt...
Laser powder bed fusion (L-PBF) process has had a rapid growth in the industrial fields because of ...
AbstractThe development of additive manufacturing has allowed for increased flexibility and complexi...
Surface roughness of laser powder bed fusion (L-PBF) printed overhang regions is a major contributor...
Modelling the thermal behaviour of the melt pool produced in Laser Powder-Bed Fusion (L-PBF) process...
This work proposed a computationally efficient analytical modeling strategy to calculate the product...
In this paper, we propose a model to predict the average surface roughness (Sa) and analyse the effe...
In this paper, we propose a model to predict the average surface roughness (Sa) and analyse the effe...
In this paper, we propose a model to predict the average surface roughness (Sa) and analyse the effe...
Additively manufactured metal components are preferred in the industries that need to be reached hig...
When reporting surface quality, the roughest surface is a reference for the measurements. In LPBF du...
This paper proposes analytical modeling methods for the prediction of balling, lack-of-fusion and ke...
When reporting surface quality, the roughest surface is a reference for the measurements. In LPBF du...
AbstractOne problematic task in the laser-based powder bed fusion (LB-PBF) process is the estimation...
Abstract When reporting surface quality, the roughest surface is a reference for the m...
One problematic task in the laser-based powder bed fusion (LB-PBF) process is the estimation of melt...
Laser powder bed fusion (L-PBF) process has had a rapid growth in the industrial fields because of ...
AbstractThe development of additive manufacturing has allowed for increased flexibility and complexi...
Surface roughness of laser powder bed fusion (L-PBF) printed overhang regions is a major contributor...