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‘Surface functionalization of hight-strength aluminium powder with ceramic nanoparticles for additive manufacturing: influence of fluidised bed processing’

Neyder Sandoval et al · Elsevier · 2026

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There is a limited number of metal alloys and metal-ceramic powders available for use in additive manufacturing (AM) processes. There is great demand to develop industrial-scale processes for producing raw material with the desired physicochemical properties for AM. Surface functionalization of metal and alloy powders offers the possibility to create novel optimized powder compositions, expand the range of materials available for AM, and improve the final properties of the components produced. The present work uses fluidised bed technology for the surface functionalization of aluminium alloy (Al2024) powders with SiC nanoparticles. Stable aqueous SiC nanoparticle colloidal suspensions were produced and atomised in the fluidised bed on Al2024 particles, producing homogeneous core-shell type powder suitable for use in AM processes. The physicochemical properties of the functionalized particles, composition, density, surface area, and flow velocity, were evaluated, demonstrating that it is possible to produce powder on a large scale with the appropriate characteristics needed for AM.

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APA 7

al, N. S. E. (2026). ‘Surface functionalization of hight-strength aluminium powder with ceramic nanoparticles for additive manufacturing: influence of fluidised bed processing’. https://doi.org/10.1016/j.jmrt.2026.04.187

MLA

al, Neyder Sandoval et. "‘Surface functionalization of hight-strength aluminium powder with ceramic nanoparticles for additive manufacturing: influence of fluidised bed processing’." 2026. https://doi.org/10.1016/j.jmrt.2026.04.187.

Chicago

al, Neyder Sandoval et. 2026. "‘Surface functionalization of hight-strength aluminium powder with ceramic nanoparticles for additive manufacturing: influence of fluidised bed processing’.". https://doi.org/10.1016/j.jmrt.2026.04.187.

Harvard

al, N. S. E. 2026, ‘Surface functionalization of hight-strength aluminium powder with ceramic nanoparticles for additive manufacturing: influence of fluidised bed processing’, Elsevier, available at: https://doi.org/10.1016/j.jmrt.2026.04.187 [Accessed 29 Jun. 2026].

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Título
‘Surface functionalization of hight-strength aluminium powder with ceramic nanoparticles for additive manufacturing: influence of fluidised bed processing’
Autor / colaboradores
Neyder Sandoval et al
Editorial
Elsevier
Año de publicación
2026
ISSN
2238-7854
ISSN
2238-7854
Idioma
eng

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