Using single pulses in powder-blown directed energy deposition to fabricate high-aspect-ratio metal pins

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Wits, W.W.
Yang, S.
Vroon, J.
Bremer, S.J.L.

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Elsevier

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© 2026 The authors

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CC BY 4.0

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This research is conducted within the research and innovation programme Luchtvaart in Transitie, which is co-funded by the Netherlands National Growth Fund.

Abstract

This study investigates the fabrication of high-aspect-ratio metal pins using powder-blown directed energy deposition. Pins are deposited by consecutive laser pulses using titanium alloy Ti6Al4V as feedstock material. A physics-integrated experimental-analytical-numerical framework is developed to predict pin geometry, pin growth and thermal history during fabrication. The framework combines experimental in-situ temperature measurements, an analytical geometry model, and a finite element thermal model for melt pool lifetime predictions. Results show good agreement between model predictions and experimental observations, enabling controlled constant-diameter vertical pin growth with optimised process parameters, which is crucial for applications such as hybrid metal-composite joining and structural repair.

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Wessel W. Wits, Shenliang Yang, Jos Vroon, Scholte J.L. Bremer, Using single pulses in powder-blown directed energy deposition to fabricate high-aspect-ratio metal pins, CIRP Annals, Volume 75, Issue 1, 2026, Pages 329-333, ISSN 0007-8506, https://doi.org/10.1016/j.cirp.2026.04.001

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