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    焊接电流对6061-T6铝合金不等厚三层板电阻点焊接头组织及力学性能的影响

    Effect of Welding Current on Microstructure and Mechanical Properties of Resistance Spot Welded Joint of 6061-T6 Aluminum Alloy Non-equal Thickness Three-Layer Plate

    • 摘要: 在不同焊接电流(15,17,19,21 kA)下对6061-T6铝合金不等厚三层板(上、中、下板厚依次为2,2,4 mm)进行电阻点焊,研究了焊接电流对点焊接头显微组织及力学性能的影响。结果表明:不同焊接电流下接头均由母材、焊核区和热影响区组成,未见明显宏观缺陷。随着焊接电流的增加,焊核柱状晶区宽度增大,等轴晶区宽度减小,焊核区和热影响区晶粒均发生粗化,第二相数量增多,尺寸增大。接头的剪切力随焊接电流增大先增大后减小,当焊接电流为19 kA时最大;不同焊接电流下的接头均呈纽扣断裂特征。接头母材的硬度最高,热影响区次之,焊核区硬度最低;随焊接电流增大,焊核区最低硬度增大。

       

      Abstract: Resistance spot welding of 6061-T6 aluminum alloy non-equal thickness three-layer plate (upper, middle and lower plate thickness was 2, 2, 4 mm successively) was carried out at different welding currents (15, 17, 19, 21 kA). The effect of welding current on microstructure and mechanical properties of spot welded joints was studied. The results show that the joints at different welding currents were composed of base metal, weld nugget zone, and heat affected zone, and no obvious macroscopic defects were found. With the increase of welding current, the width of the columnar crystal zone in weld nuggest zone increased but that of the equiaxial crystal zone decreased; the grains in nuggest zone and heat-affected zone were coarsened; the number and size of second phases increased. The shear force of the joints first increased and then decreased with increasing welding current, reaching the largest values at welding current of 19 kA. The joints at different welding currents all showed button fracture features. The hardness of the base metal of the joint was the highest, followed by that of the heat affected zone, and the hardness of the weld nugget zone was the lowest. With the increase of welding current, the lowest hardness of the nugget zone increased.

       

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