Abstract

Additive manufacturing techniques are modifying the space propulsion manufacturing panorama. These technologies, which are already implemented in manufacturing of aerospace components, are still to be further analyzed and a complete quality assurance program to be defined. In this article, a state of the art analysis of quality assurance for space propulsive applications is described. In particular, the focus is centered on material challenges associated to space propulsion: the research is oriented towards metal powders and samples implemented in selective laser melting/powder bed fusion technologies. In particular, a qualification process of the supply chain related to metal powders in space propulsion is reported. Furthermore, the application of this process to a case study material is detailed, and preliminary result data are considered. Finally, a review of the qualification process is performed and suggestions for future work on this topic are presented. This paper is published with the permission of the authors granted to 3AF - Association Aeronautique et Astronautique de France (www.3AF.fr) organizer of the Space Propulsion International conference.

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