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JOINT FORMATION AND MECHANICAL PERFORMANCE OF FRICTION SELF-PIERCING RIVETED ALUMINUM ALLOY AA7075-T6 JOINTS

机译:摩擦自冲铆接铝合金接头AA7075-T6的接头形成和力学性能

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AA7xxx series aluminum alloys have great potentials in mass saving of vehicle bodies due to pretty high specific strength. However, the use of these high strength materials poses significant challenges to traditional self-piercing riveting (SPR) process. To address this issue, friction self-piercing riveting (F-SPR) was applied to join aluminum alloy AA7075-T6 sheets. F-SPR is realized by feeding a high speed rotating steel rivet to aluminum alloy sheets to form a dissimilar material joint. The effects of spindle speed and rivet feed rate on F-SPR joint cross-section geometry evolution, riveting force and energy input were investigated systematically. It was found that the rivet shank deformation, especially the buckling of the shank tip before penetrating through the top sheet has significant influence on geometry and lap-shear failure mode of the final joint. A medium rivet feed rate combined with a high spindle speed was prone to produce a defect free joint with sound mechanical interlocking. F-SPR joints with the failure mode of rivet shear fracture was observed to have superior lap-shear peak load and energy absorption over the joints with mechanical interlock failure. The optimized F-SPR joint in this study exhibited 67.6% and 13.9% greater lap-shear peak load compared to, respectively, SPR and refill friction stir spot welding joints of the same sheets. This research provides a valuable reference for further understanding the F-SPR process.
机译:由于相当高的比强度,AA7xxx系列铝合金在节省车身质量方面具有巨大潜力。然而,这些高强度材料的使用对传统的自穿孔铆接(SPR)工艺提出了重大挑战。为解决此问题,摩擦自冲铆接(F-SPR)用于连接AA7075-T6铝合金薄板。 F-SPR是通过将高速旋转的钢铆钉送入铝合金薄板以形成异种材料接头而实现的。系统地研究了主轴转速和铆钉进给速度对F-SPR接头截面几何形状演变,铆接力和能量输入的影响。研究发现,铆钉的杆身变形,特别是杆身尖端在穿过顶片之前的屈曲,对最终接头的几何形状和搭接剪切破坏模式有重大影响。中等的铆钉进给速度加上较高的主轴转速易于产生具有良好机械互锁的无缺陷接头。观察到具有铆钉剪切断裂失效模式的F-SPR接头具有优于机械互锁失效的接头的搭接剪切峰值载荷和能量吸收。与同一板材的SPR和填充摩擦搅拌点焊接头相比,本研究中优化的F-SPR接头的搭接剪切峰值载荷分别高出67.6%和13.9%。这项研究为进一步了解F-SPR过程提供了有价值的参考。

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