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Fracture Characteristics and Analysis in Dissimilar Cu-Al Alloy Joints Formed via Electromagnetic Pulse Welding

机译:电磁脉冲焊接形成的异种铜铝合金接头的断裂特征及分析

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摘要

The aim of this study was to identify and analyze the fatigue fracture characteristics of dissimilar Al 6061 to Cu (UNS ) lap joints made with ultrafast electromagnetic pulse welding (EMPW) via fractography, stress analysis and finite element simulation. It was observed that EMPW generated an annular (or ring-shaped) bonding area, with weld zones and a central non-weld zone when viewed from the cross section. Two types of failure modes occurred in relation to the cyclic loading levels: base metal fracture or transverse through-thickness (TTT) crack growth at a higher loading level, and joint interfacial failure at a lower loading level. In the interfacial failure, fatigue crack initiated from the outer edge of annular welding area, and propagated to form an approximate elliptical boundary. Fatigue crack propagation was characterized by fatigue striations existing in discrete areas on the fracture surface. This was attributed to a coupled role of shear and normal stresses present in a tensile lap shear sample due to the bending moment caused by the inherent misalignment. The final rapid fracture started from elliptical boundary with elongated shear dimples. Both theoretical stress analysis and finite element model revealed the maximum stress and stress concentration along the outer edge, where fatigue crack initiation occurred.
机译:这项研究的目的是通过分形,应力分析和有限元模拟来识别和分析不同的Al 6061与Cu(UNS)搭接接头的疲劳断裂特性。观察到,从横截面看,EMPW产生了一个环形(或环形)粘结区域,具有焊接区和中心非焊接区。相对于循环载荷水平,发生两种类型的失效模式:较高载荷水平下的母材断裂或横向贯穿厚度(TTT)裂纹扩展,以及较低载荷水平下的接头界面破坏。在界面破坏中,疲劳裂纹从环形焊接区域的外边缘开始,并扩展形成近似椭圆的边界。疲劳裂纹扩展的特征是断裂表面离散区域中存在疲劳条纹。这归因于由于固有失准引起的弯矩,拉伸搭接剪切样品中存在剪切力和法向应力的耦合作用。最终的快速骨折从椭圆形边界开始,并带有细长的剪切凹坑。理论应力分析和有限元模型都揭示了沿外缘发生疲劳裂纹萌生的最大应力和应力集中。

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