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An in situ imaging investigation of the effect of gas flow rates on directed energy deposition

Authors :
Lorna Sinclair
Oliver Hatt
Samuel J. Clark
Sebastian Marussi
Elena Ruckh
Robert C. Atwood
Martyn Jones
Gavin J. Baxter
Chu Lun Alex Leung
Iain Todd
Peter D. Lee
Source :
Materials & Design, Vol 244, Iss , Pp 113183- (2024)
Publication Year :
2024
Publisher :
Elsevier, 2024.

Abstract

Gas flow rates in Directed Energy Deposition (DED) Additive Manufacturing (AM) can significantly affect the quality of built parts by altering melt pool geometry. Using a DED process replicator and in situ synchrotron radiography, together with analogous experiments in an industrial DED machine, we investigate the impact of carrier gas and shield gas flow rates on build quality. The results reveal that there is a critical shield gas flow rate above which melt pools are flattened, tracks widen, and thus layer thickness decreases. The reduction in layer thickness is most prominent in conditions with low carrier gas flow rate, as the highly turbulent shield gas flow may divert slow moving powder particles away from the melt pool, decreasing capture efficiency. Very high flow rates increase internal porosity, as fast-moving particles impacting the melt pool surface can entrain chamber gas behind them. High gas flow rates also cool the melt pool, creating shallower melt pools with increased thermal gradients near the solidification front, increasing pore entrapment in the solidified track.

Details

Language :
English
ISSN :
02641275
Volume :
244
Issue :
113183-
Database :
Directory of Open Access Journals
Journal :
Materials & Design
Publication Type :
Academic Journal
Accession number :
edsdoj.5e05120c5ad4048baec74d0481c5b6a
Document Type :
article
Full Text :
https://doi.org/10.1016/j.matdes.2024.113183