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Transient dynamics and stability of keyhole at threshold in laser powder bed fusion regime investigated by finite element modeling

Article dans une revue avec comité de lecture
Auteur
MAYI, Yaasin A.
PEYRE, Patrice
BELLET, Michel
301492 Mines Paris - PSL (École nationale supérieure des mines de Paris)
METTON, Charlotte
505477 Safran Tech
MORICONI, Clara
505477 Safran Tech
FABBRO, Remy
ccDAL, Morgan
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]

URI
http://hdl.handle.net/10985/19943
DOI
10.2351/7.0000330
Date
2021
Journal
Journal of Laser Applications

Résumé

A Finite element model is developed with a commercial code to investigate the keyhole dynamics and stability at keyhole threshold, a fusion regime characteristic to laser microwelding or to Laser Powder Bed Fusion. The model includes relevant physics to treat the hydrodynamic problems - surface tension, Marangoni stress, and recoil pressure - as well as a self-consistent ray-tracing algorithm to account for the "beam-trapping"effect. Implemented in both static and scanning laser configurations, the model successfully reproduces some key features that most recent x-ray images have exhibited. The dynamics of the liquid/gas interface is analyzed, in line with the distribution of the absorbed intensity as well as with the increase of the keyhole energy coupling. Based on these results, new elements are provided to discuss our current understanding of the keyhole formation and stability at threshold.

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Nom:
PIMM_JLA_2021_MAYI.pdf
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2.124Mo
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Article
Fin d'embargo:
2021-08-01
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Documents liés

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  • Laser-induced plume investigated by finite element modelling and scaling of particle entrainment in laser powder bed fusion 
    Article dans une revue avec comité de lecture
    MAYI, Yaasin; PEYRE, Patrice; BELLET, Michel; METTON, Charlotte; MORICONI, Clara; FABBRO, Rémy; ccDAL, Morgan (IOP Publishing, 2019)
    Although metal vaporisation has been observed in several laser processes such as drilling or welding, vapour plume expansion and its induced side effects are not fully understood. Especially, this phenomenon is garnering ...
  • Erratum: “Transient dynamics and stability of keyhole at threshold in laser powder bed fusion regime investigated by finite element modeling” [J. Laser Appl. 33, 012024 (2021)] 
    Article dans une revue avec comité de lecture
    MAYI, Yaasin A.; PEYRE, Patrice; BELLET, Michel; METTON, Charlotte; MORICONI, Clara; FABBRO, Remy; ccDAL, Morgan (Laser Institute of America, 2021)
    Correction
  • Physical mechanisms of conduction-to-keyhole transition in laser welding and additive manufacturing processes 
    Article dans une revue avec comité de lecture
    MAYI, Yaasin A.; ccPEYRE, Patrice; BELLET, Michel; FABBRO, Remy; ccDAL, Morgan (Elsevier, 2022-10)
    Thermo-hydrodynamic phenomena which take place during laser welding or additive manufacturing processes as laser powder bed fusion, have been investigated for years, but recent advances in X-ray images and in situ analysis ...
  • Absorptivity measurements during laser powder bed fusion of pure copper with a 1 kW cw green laser 
    Article dans une revue avec comité de lecture
    ccNORDET, Guillaume; GORNY, Cyril; ccMAYI, Yaasin; ccDALIGAULT, Julien; ccDAL, Morgan; EFFERNELLI, A.; BLANCHET, E.; COSTE, Frédéric; ccPEYRE, Patrice (Elsevier Ltd, 2021-10)
    A 1 kW CW green laser source operating at 515 nm was used to investigate the absorptivity of pure copper powder beds and pure copper substrates. Various interaction regimes were considered, ranging from the solid and/or ...
  • Analysis of laser–melt pool–powder bed interaction during the selective laser melting of a stainless steel 
    Article dans une revue avec comité de lecture
    GUNENTHIRAM, Valérie; PEYRE, Patrice; COSTE, Frédéric; FABBRO, Rémy; ccDAL, Morgan; ccSCHNEIDER, Matthieu (Laser Institute of America, 2017)
    The laser powder bed fusion (LPBF) or powder-bed additive layer manufacturing process is now recognized as a high-potential manufacturing process for complex metallic parts. However, many technical issues are still to ...

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