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Volume 38 Issue 1
Dec.  2013
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Effect of V-shaped grooves on properties of laser welding-brazed steel-aluminum butt joints

  • Received Date: 2013-03-07
    Accepted Date: 2013-04-08
  • In order to improve the homogeneity of metallurgical reaction on the bonding interface between seam and steel so as to improve the tensile strength of a specimen, the effect of V-shaped grooves on properties of laser welding-brazing steel-aluminum butt joints was discussed by means of simulation combined with experiments. Frist, the temperature field of laser welding steel-aluminum butt was simulated by means of ANSYS. It was found that the temperature gradient on the bonding interface when there was a V-shaped groove on galvanized steel was lower than that when there was no grooves on galvanized steel. Then the experiments were carried out for laser welding steel-aluminum butt joints with and without V-shaped grooves on galvanized steel respectively, and the specimens were subjected to a tensile test. The result showed that distribution of intermetallic compounds on the bonding interface between the seam and galvanized steel with a V-shaped groove was more uniform than that without grooves. The V-shaped groove on the base material made the fracture far away from the bonding interface and the mechanical property of the joint was improved significantly.
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  • [1]

    LEE W B, SCHMUECKER M, MERCARDO U A, et al. Interfacial reaction in steel-aluminum joints made by friction stir welding[J]. Scripta Mater, 2006, 55(4):355-358.
    [2]

    BROCKMANN R, DICKMANN K, RADSCHEIT C, et al. Method for the laser beam joining of aluminum and steel in the thin sheet range[J]. Weld Cut, 1996, 48(3):46-47.
    [3]

    LIU Zh Q, LIU K. Dissimilia rmatel welding technology guide[M]. Beijing: China Machine Press, 1986: 36-37(in Chinese).
    [4]

    ELLIOTT S, WALLACH E. Joining aluminum to steel by friction welding[J]. Metal Constrution, 1981, 13(4):221-225.
    [5]

    SZECKET A, INAL O T, VIGUERAS D J, et al. A wavy versus straight interface in the explosive welding aluminum to steel[J]. Journal of Vacuum Science and Technology, 1985, 3(6): 2588-2593.
    [6]

    JIANG W H, KOVACEVIC R. Feasibility study of friction stir welding of 6061-T6 aluminium alloy with AISI 1018 steel[J].Engineering Manufacture, 2004, 218(10): 1323-1331.
    [7]

    ZHANG M J, CHEN G Y, LI Sh Ch, et al. Experimental ivestigation on fiber laser overlap welding of automotive aluminum to galvanized steel[J]. Chinese Journal of Lasers, 2011, 38(6):134-139 (in Chinese).
    [8]

    MATHIEU A, SHABADI R, DESCHAMPS A, et al. Dissimilar material joining using laser(aluminum to steel using zinc-based filler wire)[J]. Optics & Laser Technology, 2007, 39(3):652-661.
    [9]

    TORKAMANY M J, TAHAMTAN S, SABBAGHZADEH J. Dissimilar welding of carbon steel to 5754 aluminum alloy by Nd∶YAG pulsed laser[J]. Materials and Design, 2010, 31(1):458-465.
    [10]

    SHI Y, ZHANG H, TAKEHIRO W, et al. CW/PW dual-beam YAG laser welding of steel/aluminum alloy sheets[J]. Optics and Lasers in Engineering, 2010, 37(4):1132-1137.
    [11]

    ZHANG H G, JIN X Zh, CHEN G Y, et al. Study on the burning loss of magnesium element in fiber laser welding aluminum alloy 5052[J]. Laser Technology, 2012, 36(6):713-718(in Chinese).
    [12]

    SONG J L, LIN S B, YANG C L, et al. Analysis of intermetallic layer in dissimilar TIG welding-brazing butt joint of aluminium alloy to stainless steel[J]. Science and Technology of Welding and Joining, 2010, 15(3):213-218.
    [13]

    CHEN G Y, CHEN M, LI Sh Ch, et al. Research of partial penetrated laser overlap-welding of thin steel sheet[J]. Laser Technology, 2011, 35(5):577-581(in Chinese).
    [14]

    PEYRE P, SIERRA G, DESCHAUX-BEAUME F, et al. Generation of aluminium-steel joints with laser-induced reactive wetting[J]. Materials Science and Engineering, 2007, 444(1/2): 327-338.
    [15]

    MURAKAMI T, NAKATA K, TONG H, et al. Dissimilar metal joining of aluminum to steel by MIG arc brazing using flux cored wire[J]. ISIJ International, 2003, 43(10): 1596-1602.
    [16]

    DHARMENDRA C, RAO K P, WILDEN J, et al. Study on laser welding-brazing of zinc coated steel to aluminum alloy with a zinc based filler[J]. Materials Science and Engineering, 2011, 528(3):1497-1503.
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Effect of V-shaped grooves on properties of laser welding-brazed steel-aluminum butt joints

  • 1. State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body, Hunan University, Changsha 410082, China

Abstract: In order to improve the homogeneity of metallurgical reaction on the bonding interface between seam and steel so as to improve the tensile strength of a specimen, the effect of V-shaped grooves on properties of laser welding-brazing steel-aluminum butt joints was discussed by means of simulation combined with experiments. Frist, the temperature field of laser welding steel-aluminum butt was simulated by means of ANSYS. It was found that the temperature gradient on the bonding interface when there was a V-shaped groove on galvanized steel was lower than that when there was no grooves on galvanized steel. Then the experiments were carried out for laser welding steel-aluminum butt joints with and without V-shaped grooves on galvanized steel respectively, and the specimens were subjected to a tensile test. The result showed that distribution of intermetallic compounds on the bonding interface between the seam and galvanized steel with a V-shaped groove was more uniform than that without grooves. The V-shaped groove on the base material made the fracture far away from the bonding interface and the mechanical property of the joint was improved significantly.

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