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Generation and characterization of T40/A5754 interfaces with lasersPatrice

Article dans une revue avec comité de lecture
Auteur
PEYRE, Patrice
BERTHE, Laurent
POUZET, Sébastien
SALLAMAND, Pierre
103192 Laboratoire Interdisciplinaire Carnot de Bourgogne [ICB]
TOMASHCHUK, Iryna
103192 Laboratoire Interdisciplinaire Carnot de Bourgogne [ICB]
ccDAL, Morgan
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]

URI
http://hdl.handle.net/10985/8354
DOI
10.1016/j.jmatprotec.2014.04.019
Date
2014
Journal
Journal of Materials Processing Technology

Résumé

Laser-induced reactive wetting and brazing of T40 titanium with A5754 aluminum alloy with 1.5 mm thickness was carried out in lap-joint configuration, with or without the use of Al5Si filler wire. A 2.4 mm diameter laser spot was positioned on the aluminum side to provoke spreading and wetting of the lower titanium sheet, with relatively low scanning speeds (0.1–0.6 m/min). Process conditions did not play a very significant role on mechanical strengths, which were shown to reach 250–300 N/mm on a large range of laser power and scanning speeds. In all cases considered, the fracture during tensile testing occurred next to the TiAl3 interface, but in the aluminum fusion zone. The interfacial resistance was then evaluated with the LASAT bond strength tester, based upon the generation and propagation of laser-induced shock waves. A 0.68 GPa uniaxial bond strength was estimated for the T40/A5754 interface under dynamic loading conditions.

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Nom:
PIMM-JMPT-PEYRE-2014.pdf
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Documents liés

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  • Generation and characterization of T40/A5754 interfaces with lasers 
    Article dans une revue avec comité de lecture
    PEYRE, Patrice; BERTHE, Laurent; POUZET, Sébastien; SALLAMAND, Pierre; TOMASHCHUK, Iryna; ccDAL, Morgan (Elsevier, 2014)
    Laser-induced reactive wetting and brazing of T40 titanium with A5754 aluminum alloy with 1.5 mm thickness was carried out in lap-joint configuration, with or without the use of Al5Si filler wire. A 2.4 mm diameter laser ...
  • Simplified numerical model for the laser metal deposition additive manufacturing process 
    Article dans une revue avec comité de lecture
    PEYRE, Patrice; POUZET, Sébastien; CASTELNAU, Olivier; ccDAL, Morgan (Laser Institute of America, 2017)
    The laser metal deposition (LMD) laser technique is a free-form metal deposition process, which allows generating near net-shape structures through the interaction of a powder stream and a laser beam. A simplified numerical ...
  • 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
  • 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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