Authors
Meena Pant, Leeladhar Nagdeve, Girija Moona, Harish Kumar, Arun Rajput, J Ramkumar
Publication date
2024/1/23
Journal
Journal of Materials Engineering and Performance
Pages
1-14
Publisher
Springer US
Description
The main research objective for the advancement of laser powder bed fusion is the improvement in performance and realization of part quality. The aims of this study were to choose a particular set of process factors and to fully comprehend how they affect the mechanical properties, relative density, microstructure, and surface roughness of a material. The effect of laser power (250 to 350 W), hatch spacing (80 to 100 µm), scanning speed (700 to 1100 mm/s), and energy density on the output responses of 316L stainless steel samples were reported. Heat treatment was performed on the samples at 470 °C for 5 hours, followed by furnace cooling in an argon atmosphere. The microstructures of the samples showed small cells, several types of columnar grains, and network transitions from columnar to cellular at the melt pool boundary. An energy density range of 59 to 80 J/mm3 was used in this experiment, which …
Scholar articles
M Pant, L Nagdeve, G Moona, H Kumar, A Rajput… - Journal of Materials Engineering and Performance, 2024