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CO2 laser beam welding of AM60 magnesium-based alloy

Article dans une revue avec comité de lecture
Auteur
BELHADJ, Asma
BOUHAFS, Mahmoud
BESSROUR, Jamel
ccMASSE, Jean-Eric
211915 Mechanics surfaces and materials processing [MSMP]
BARRALLIER, Laurent

URI
http://hdl.handle.net/10985/8436
DOI
10.2351/1.3455823
Date
2010
Journal
Journal of Laser Applications

Résumé

Magnesium alloys have a 33% lower density than aluminum alloys, whereas they exhibit the same mechanical characteristics. Their application increases in many economic sectors, in particular, in aeronautic and automotive industries. Nevertheless, their assembly with welding techniques still remains to be developed. In this paper, we present a CO2 laser welding investigation of AM60 magnesium-based alloy. Welding parameters range is determinate for the joining of 3 mm thickness sheets. The effects of process parameters including beam power, welding speed, focusing position, and shielding gas flow are studied. Experimental results show that the main parameters that determine the weld quality are the laser beam power, the welding speed, and the shielding gas flow. The focal point position has a minor effect on weld quality, however, it has an influence on melting zone width. For optimized welding parameters, metallurgical observations show that after laser welding of AM60 alloy dendritic microstructure is observed on melting zone after high solidification rate. A small heat affected zone is also detected. Finally, hardness tests indicate that microhardness of the weld is higher than that of base metal.

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  • Laboratoire Mechanics, Surfaces and Materials Processing (MSMP)

Documents liés

Visualiser des documents liés par titre, auteur, créateur et sujet.

  • Finite element simulation of magnesium alloys laser beam welding 
    Article dans une revue avec comité de lecture
    BELHADJ, Asma; BESSROUR, Jamel; BOUHAFS, Mahmoud; ccMASSE, Jean-Eric; BARRALLIER, Laurent (Elsevier, 2010)
    In this paper, a three-dimensional finite element model is developed to simulate thermal history magnesium-based alloys during laser beam welding. Space–time temperature distributions in weldments are predicted from the ...
  • Influence of the microstructural changes and induced residual stresses on tensile properties of wrought magnesium alloy friction stir welds 
    Article dans une revue avec comité de lecture
    COMMIN, Loreleï; ROTINAT, René; PIERRON, Fabrice; ccDUMONT, Myriam; ccMASSE, Jean-Eric; BARRALLIER, Laurent (Elsevier, 2012)
    Friction stir welding induces a microstructural evolution and residual stresses that will influence the resulting mechanical properties. Friction stir welds produced from magnesium alloy hot rolled plates were studied. ...
  • Texture evolution in Nd:YAG-laser welds of AZ31 magnesium alloy hot rolled sheets and its influence on mechanical properties 
    Article dans une revue avec comité de lecture
    COMMIN, Loreleï; ROTINAT, René; PIERRON, Fabrice; ccDUMONT, Myriam; ccMASSE, Jean-Eric; BARRALLIER, Laurent (Elsevier, 2011)
    AZ31 hot rolled magnesium alloy presents a strong basal texture. Using laser beam welding (LBW) as a joining process induces high temperature gradients leading to major texture changes. EBSD was used to study the texture ...
  • Numerical modelling of laser rapid prototyping by fusion wire deposit 
    Article dans une revue avec comité de lecture
    ARBAOUI, Larbi; MOCELLIN, Katia; ccMASSE, Jean-Eric; BARRALLIER, Laurent (Springer Verlag, 2010)
    A finite element model has been developed to simulate an innovative laser rapid prototyping process. Several numerical developments have been implemented in order to simulate the main steps of the rapid prototyping process: ...
  • Residual stress evolution analysis in AZ31 friction stir welds using X-Ray and neutron diffraction 
    Communication avec acte
    COMMIN, Loreleï; ccMASSE, Jean-Eric; BARRALLIER, Laurent (JCPDS - International Centre for Diffraction Data, 2009)
    The challenges of weight reduction in aerospace industry have drawn considerable interest in magnesium alloys technologies. Assessing the efficiency of new joining techniques, as Friction Stir Welding (FSW) is then required. ...

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