The present work investigates the effects of geometry and laser power on the porosity and melt pool formation for 316L stainless steel samples fabricated using the laser powder bed fusion (LPBF) technique. Both cylindrical and conical parts with the same heights were processed at a range of laser powers (60–70 W). An analytical model was used to select a suitable laser power, based on the established processing parameters, but also to predict the resultant melt pool dimensions. Based on the combination of experimental work and mathematical modelling, a novel geometrical factor is proposed, which was demonstrated to successfully improve the implemented model. A decrease in melt pool depths towards the building direction was determined in all...
© 2020 The Authors This study investigates the effect of position on build-plate on the dimensi...
This study investigates the porosity and microhardness of 316L stainless steel samples fabricated by...
This thesis work was done to get a fundamental knowledge of the mechanical and microstructural prope...
Laser Powder Bed Fusion (L-PBF) is a Metal Additive Manufacturing (MAM) technology where a complex 3...
Laser powder bed fusion (LPBF) is an additive manufacturing technique by which complex structural pa...
Previous studies have revealed that laser power and energy density are significant factors affecting...
The understanding of relationships between processing, microstructure and mechanical properties in l...
This research aims to identify how meltpool temperature is determined by process parameters in Laser...
This research aims to identify how meltpool temperature is determined by process parameters in Laser...
The interest for additive manufacturing techniques have in recent years increased considerably becau...
The interest for additive manufacturing techniques have in recent years increased considerably becau...
Selective Laser Melting (SLM) demonstrates the 21st century’s manufacturing infrastructure in which ...
This study investigates the effect of position on build-plate on the dimensional deviations for stai...
This study investigates the porosity and microhardness of 316L stainless steel samples fabricated by...
In this study, a combined simulation and experimental approach is utilized to investigate the influe...
© 2020 The Authors This study investigates the effect of position on build-plate on the dimensi...
This study investigates the porosity and microhardness of 316L stainless steel samples fabricated by...
This thesis work was done to get a fundamental knowledge of the mechanical and microstructural prope...
Laser Powder Bed Fusion (L-PBF) is a Metal Additive Manufacturing (MAM) technology where a complex 3...
Laser powder bed fusion (LPBF) is an additive manufacturing technique by which complex structural pa...
Previous studies have revealed that laser power and energy density are significant factors affecting...
The understanding of relationships between processing, microstructure and mechanical properties in l...
This research aims to identify how meltpool temperature is determined by process parameters in Laser...
This research aims to identify how meltpool temperature is determined by process parameters in Laser...
The interest for additive manufacturing techniques have in recent years increased considerably becau...
The interest for additive manufacturing techniques have in recent years increased considerably becau...
Selective Laser Melting (SLM) demonstrates the 21st century’s manufacturing infrastructure in which ...
This study investigates the effect of position on build-plate on the dimensional deviations for stai...
This study investigates the porosity and microhardness of 316L stainless steel samples fabricated by...
In this study, a combined simulation and experimental approach is utilized to investigate the influe...
© 2020 The Authors This study investigates the effect of position on build-plate on the dimensi...
This study investigates the porosity and microhardness of 316L stainless steel samples fabricated by...
This thesis work was done to get a fundamental knowledge of the mechanical and microstructural prope...