The systematic occurrence of porosities inside selective laser melted (SLM) parts is a well-known phenomenon. In order to improve the density of SLM parts, it is important not only to assess the physical origin of the different types of porosities, but also to be able to measure as precisely as possible the porosity rate so that one may select the optimum manufacturing parameters. Considering 316 L steel parts built with different input energies, the current paper aims to (1) present the different types of porosities generated by SLM and their origins, (2) compare different methods for measuring parts density and (3) propose optimal procedures. After a preliminary optimization step, three methods were used for quantifying porosity rate: the...
Selective laser melting (SLM) is widely gaining popularity as an alternative manufacturing technique...
Porosity is an inherent feature of additively manufactured components that impairs the mechanical pr...
The selective laser melting (SLM) process allows to produce dense metal parts directly from the melt...
This study focuses on the comparison of porosity testing methods for the quality assessment of selec...
This study investigates the porosity and microhardness of 316L stainless steel samples fabricated by...
In this paper, the potential of selective laser melting (SLM) of stainless steel CL 20ES powder was ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2018.Ca...
While the volumetric energy density is commonly used to qualify a process parameter set, and to quan...
This study investigates the porosity and microhardness of 316L stainless steel samples fabricated by...
One of the most critical defects in selective laser melting (SLM) is the porosity formation. Optimiz...
Le procédé de fusion sélective « lit de poudre » (SLM) permet d'élaborer des pièces métalliques bonn...
In this study, the development of surface structure and porosity of Ti–6Al–4V samples fabricated by ...
Selective laser melting (SLM) is widely gaining popularity as an alternative manufacturing technique...
Porosity is an inherent feature of additively manufactured components that impairs the mechanical pr...
The selective laser melting (SLM) process allows to produce dense metal parts directly from the melt...
This study focuses on the comparison of porosity testing methods for the quality assessment of selec...
This study investigates the porosity and microhardness of 316L stainless steel samples fabricated by...
In this paper, the potential of selective laser melting (SLM) of stainless steel CL 20ES powder was ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2018.Ca...
While the volumetric energy density is commonly used to qualify a process parameter set, and to quan...
This study investigates the porosity and microhardness of 316L stainless steel samples fabricated by...
One of the most critical defects in selective laser melting (SLM) is the porosity formation. Optimiz...
Le procédé de fusion sélective « lit de poudre » (SLM) permet d'élaborer des pièces métalliques bonn...
In this study, the development of surface structure and porosity of Ti–6Al–4V samples fabricated by ...
Selective laser melting (SLM) is widely gaining popularity as an alternative manufacturing technique...
Porosity is an inherent feature of additively manufactured components that impairs the mechanical pr...
The selective laser melting (SLM) process allows to produce dense metal parts directly from the melt...