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Study of spatter ejections during laser-powder bed fusion process for aluminum alloys

Article dans une revue avec comité de lecture
Author
CHEBIL, Gwenaëlle
1042183 DMAS, ONERA, Université Paris Saclay [Châtillon]
ccLAPOUGE, Pierre
40010 Service des Recherches Métallurgiques Appliquées [SRMA]
RENOLLET, Yves
1042183 DMAS, ONERA, Université Paris Saclay [Châtillon]
DAVOINE, Cécile
1042183 DMAS, ONERA, Université Paris Saclay [Châtillon]
THOMAS, Marc
1042183 DMAS, ONERA, Université Paris Saclay [Châtillon]
ccFAVIER, Véronique
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]
ccSCHNEIDER, Matthieu

URI
http://hdl.handle.net/10985/23355
DOI
10.2351/7.0000493
Date
2021-11
Journal
Journal of Laser Applications

Abstract

During L-PBF process on aluminum alloys, instabilities such as spatter ejections result from the laser-matter interaction. These spatters create a variety of defects and affect the mechanical properties of the final parts. To help understanding this phenomenon, a global method was developed, combining experimental study and image analysis. This system provides statistic information on spatter population (radius, velocity, direction and emission rate) and the idea of pollutant spatter is defined. Four aluminum alloys are compared. The results show the oxygen content in the fabrication chamber has no effect on the spatter ejection dynamic. The spatter velocity, angle of ejection and size increase with the intensity. Also, significant differences are noticed between the different alloys.

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