Critical instability at moving keyhole tip generates porosity in laser melting

Laser powder bed fusion is a dominant metal 3D printing technology. However, porosity defects remain a challenge for fatigue-sensitive applications. Some porosity is associated with deep and narrow vapor depressions called keyholes, which occur under high-power, low-scan speed laser melting conditio...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 2020-11, Vol.370 (6520), p.1080-1086
Hauptverfasser: Zhao, Cang, Parab, Niranjan D, Li, Xuxiao, Fezzaa, Kamel, Tan, Wenda, Rollett, Anthony D, Sun, Tao
Format: Artikel
Sprache:eng
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Zusammenfassung:Laser powder bed fusion is a dominant metal 3D printing technology. However, porosity defects remain a challenge for fatigue-sensitive applications. Some porosity is associated with deep and narrow vapor depressions called keyholes, which occur under high-power, low-scan speed laser melting conditions. High-speed x-ray imaging enables operando observation of the detailed formation process of pores in Ti-6Al-4V caused by a critical instability at the keyhole tip. We found that the boundary of the keyhole porosity regime in power-velocity space is sharp and smooth, varying only slightly between the bare plate and powder bed. The critical keyhole instability generates acoustic waves in the melt pool that provide additional yet vital driving force for the pores near the keyhole tip to move away from the keyhole and become trapped as defects.
ISSN:0036-8075
1095-9203
DOI:10.1126/science.abd1587