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Weld Growth Mechanisms and Failure Behavior of Three-Sheet Resistance Spot Welds Made of 5052 Aluminum Alloy

机译:5052铝合金三层电阻点焊的生长机理及失效行为

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This paper investigates the weld nugget formation in three-sheet aluminum alloy resistance spot welding. The nugget formation process in three equal thickness sheets and three unequal thickness sheets of 5052 aluminum alloy were studied. The results showed that the nugget was initially formed at the workpiece/workpiece interfaces (i.e., both upper interface and lower interface). The two small nuggets then grew along the radial direction and axial direction (welding direction) as the welding time increased. Eventually, the two nuggets fused into one large nugget. During the welding process, the Peltier effect between the Cu-Al caused the shift of the nugget in the welding direction. In addition, the mechanical strength and fracture mode of the weld nuggets at the upper and lower interfaces were also studied using tensile shear specimen configuration. Three failure modes were identified, namely interfacial, mixed, and pullout. The critical welding time and critical nugget diameter corresponding to the transitions of these modes were investigated. Finally, an empirical failure load formula for three-sheet weld similar to two-sheet spot weld was developed.
机译:本文研究了三层铝合金电阻点焊中的焊接熔核形成。研究了三个相等厚度的板和三个不相等厚度的5052铝合金的熔核形成过程。结果表明,熔核最初是在工件​​/工件界面(即,上界面和下界面)处形成的。然后,随着焊接时间的增加,两个小熔核沿径向和轴向(焊接方向)逐渐增大。最终,两个金块融合为一个大金块。在焊接过程中,Cu-Al之间的珀尔帖效应导致了熔核在焊接方向上的移动。此外,还使用拉伸剪切试样构型研究了上,下界面的熔核的机械强度和断裂模式。确定了三种故障模式,即界面,混合和拔出。研究了与这些模式的转变相对应的临界焊接时间和临界熔核直径。最后,建立了类似于两片点焊的三片焊缝的经验失效载荷公式。

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