A review of Laser Powder Bed Fusion Additive Manufacturing of aluminium alloys: Microstructure and properties

HR Kotadia, G Gibbons, A Das, PD Howes - Additive Manufacturing, 2021 - Elsevier
Additive manufacturing (AM) of metallic alloys for structural and functional applications has
attracted significant interest in the last two decades as it brings a step change in the …

Additive manufacturing of metallic components by selective electron beam melting—a review

C Körner - International Materials Reviews, 2016 - Taylor & Francis
Selective electron beam melting (SEBM) belongs to the additive manufacturing technologies
which are believed to revolutionise future industrial production. Starting from computer …

[HTML][HTML] Processing parameters in laser powder bed fusion metal additive manufacturing

JP Oliveira, AD LaLonde, J Ma - Materials & Design, 2020 - Elsevier
As metallic additive manufacturing grew in sophistication, users have requested greater
control over the systems, namely the ability to fully change the process parameters. The goal …

[HTML][HTML] Metal additive manufacturing: a review of mechanical properties

JJ Lewandowski, M Seifi - Annual review of materials research, 2016 - annualreviews.org
This article reviews published data on the mechanical properties of additively manufactured
metallic materials. The additive manufacturing techniques utilized to generate samples …

A literature review of powder-based electron beam melting focusing on numerical simulations

M Galati, L Iuliano - Additive Manufacturing, 2018 - Elsevier
Abstract The Electron Beam Melting (EBM) process is an additive manufacturing process in
which an electron beam melts metallic powders to obtain the geometry of a specific part. The …

Overview of current additive manufacturing technologies and selected applications

TJ Horn, OLA Harrysson - Science progress, 2012 - journals.sagepub.com
Three-dimensional printing or rapid prototyping are processes by which components are
fabricated directly from computer models by selectively curing, depositing or consolidating …

[HTML][HTML] Effect of building direction on the microstructure and tensile properties of Ti-48Al-2Cr-2Nb alloy additively manufactured by electron beam melting

M Todai, T Nakano, T Liu, HY Yasuda, K Hagihara… - Additive …, 2017 - Elsevier
This paper clarified a novel strategy to improve the tensile properties of the Ti-48Al-2Cr-2Nb
alloys fabricated by electron beam melting (EBM), via the finding of the development of …

Actual state-of-the-art of electron beam powder bed fusion

Z Fu, C Körner - European Journal of Materials, 2022 - Taylor & Francis
As a relatively young additive manufacturing technology, Electron Beam Powder Bed Fusion
(EB-PBF) attracts increasing attention in academics and industry. Especially, the last five …

Electron beam melting of Ti–48Al–2Cr–2Nb alloy: Microstructure and mechanical properties investigation

S Biamino, A Penna, U Ackelid, S Sabbadini, O Tassa… - Intermetallics, 2011 - Elsevier
Gas atomized Ti–48Al–2Cr–2Nb powders have been used as precursor material in order to
evaluate additive manufacturing for the production of near-net-shape γ-TiAl specimens to be …

Characterization of titanium aluminide alloy components fabricated by additive manufacturing using electron beam melting

LE Murr, SM Gaytan, A Ceylan, E Martinez, JL Martinez… - Acta materialia, 2010 - Elsevier
Intermetallic, γ-TiAl, equiaxed, small-grain (∼ 2μm) structures with lamellar γ/α2-Ti3Al
colonies with average spacing of 0.6 μm have been fabricated by additive manufacturing …