Novel Aluminum Alloy Tailored for Additive Manufacturing: Structural Characterization and Qualification Perspectives

Author:

Arena Maurizio1ORCID,Mehta Bharat23ORCID,Tirelli Tommaso4ORCID,Ambrogiani Paolo4,Castaldo Martina1,Bengtsson Sven25ORCID,Nyborg Lars2

Affiliation:

1. Magnaghi Aeronautica of MA Group Company, Engineering & Research Unit, Via Galileo Ferraris 76, 80146 Napoli, NA, Italy

2. Department of Industrial & Materials Science, Chalmers University of Technology, Rännvägen 2A, 41296 Göteborg, Sweden

3. Department of Materials Science and Engineering, KTH Royal Institute of Technology, Brinellvägen 23, 10044 Stockholm, Sweden

4. Aidro S.r.l., 21020 Taino, VA, Italy

5. Höganäs AB, Bruksgatan 35, 26339 Höganäs, Sweden

Abstract

The recent advances achieved in additive manufacturing (AM) technology demonstrate the potential to realize customized metal components, ensuring weight reduction opportunities. These benefits make AM attractive for high-cost aerospace applications, especially where high geometric complexity is required. In the context of an EU research scenario, the H2020 MANUELA (Additive Manufacturing Using Metal Pilot Line) project promotes the development of new technologies for design optimization by enabling the application of novel materials in AM. This paper illustrates recent advances in a new aluminum alloy (Al-HS1) with high strength emphasizing all of the characterization steps at the coupon level. This material has been employed in the re-engineering of a conventional hydraulic manifold using a powder bed fusion-laser beam (PBF-LB) process. Both the simulations and structural tests allowed for proving its compliance and technological maturity with industrial standards and applicable airworthiness requirements.

Funder

Union’s Horizon 2020 MANUELA

Publisher

MDPI AG

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