The laser powder bed fusion (L-PBF) process is a powder-based additive manufacturing process that can manufacture complex metallic components. However, when the metallic components are fabricated with the L-PBF process, they frequently encounter the residual stress and distortion that occurs due to the cyclic of rapid heating and cooling. The distortion detrimentally impacts the dimensional and geometrical accuracy of final built parts in the L-PBF process. The purpose of this research was to explore and predict the distortion of Ti-6Al-4V components manufactured using the L-PBF process by using numerical modeling in Simufact Additive 2020 FP1 software. Firstly, the numerical model validation was conducted with the twin-cantilever beam part...
The capability of correctly predicting part deflections after support removal is important to assess...
Process-induced volumetric defects are inherent to additively manufactured parts. This study inves...
Laser Powder Bed Fusion (L-PBF) is an additive manufacturing process that is becoming widely adopted...
Laser powder bed fusion (L-PBF) is widely used in automotive, aerospace, and biomedical applications...
As additively manufactured (AM) parts become viable options for various structural applications, it...
As additively manufactured (AM) parts become viable options for various structural applications, it...
Laser-powder bed fusion (L-PBF) is a metal additive manufacturing (MAM) method that promises the abi...
This paper presents the development of an integrated approach for microstructure prediction in laser...
The Laser Powder-Bed Fusion (LPBF) process produces complex part geometry by selectively sintering p...
Powder bed fusion (PBF) is one of the most popular techniques in additive manufacturing (AM). The PB...
Laser powder bed fusion (LPBF), as a popular additive manufacturing (AM) technique, has gained a gre...
The process variables used in laser powder bed fusion (L-PBF) influence the defect formation in fa...
A key challenge for successful exploitation of additive manufacturing (AM) across a broad range of i...
A key challenge for successful exploitation of additive manufacturing (AM) across a broad range of i...
The capability of correctly predicting part deflections after support removal is important to assess...
The capability of correctly predicting part deflections after support removal is important to assess...
Process-induced volumetric defects are inherent to additively manufactured parts. This study inves...
Laser Powder Bed Fusion (L-PBF) is an additive manufacturing process that is becoming widely adopted...
Laser powder bed fusion (L-PBF) is widely used in automotive, aerospace, and biomedical applications...
As additively manufactured (AM) parts become viable options for various structural applications, it...
As additively manufactured (AM) parts become viable options for various structural applications, it...
Laser-powder bed fusion (L-PBF) is a metal additive manufacturing (MAM) method that promises the abi...
This paper presents the development of an integrated approach for microstructure prediction in laser...
The Laser Powder-Bed Fusion (LPBF) process produces complex part geometry by selectively sintering p...
Powder bed fusion (PBF) is one of the most popular techniques in additive manufacturing (AM). The PB...
Laser powder bed fusion (LPBF), as a popular additive manufacturing (AM) technique, has gained a gre...
The process variables used in laser powder bed fusion (L-PBF) influence the defect formation in fa...
A key challenge for successful exploitation of additive manufacturing (AM) across a broad range of i...
A key challenge for successful exploitation of additive manufacturing (AM) across a broad range of i...
The capability of correctly predicting part deflections after support removal is important to assess...
The capability of correctly predicting part deflections after support removal is important to assess...
Process-induced volumetric defects are inherent to additively manufactured parts. This study inves...
Laser Powder Bed Fusion (L-PBF) is an additive manufacturing process that is becoming widely adopted...