首页> 外文会议>ASME international mechanical engineering congress and exposition >FRICTION SELF-PIERCING RIVETING (F-SPR) OF AA6061-T6 TO AZ31B
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FRICTION SELF-PIERCING RIVETING (F-SPR) OF AA6061-T6 TO AZ31B

机译:AA6061-T6至AZ31B的摩擦自冲铆钉(F-SPR)

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Implementation of lightweight low-ductility materials such as aluminum alloys, magnesium alloys and composite materials has become urgently needed for automotive manufacturers to improve the competitiveness of their products. However, the hybrid use of these materials poses big challenges to joining processes. Self-piercing riveting (SPR) is currently the most popular technique for joining dissimilar materials and has been widely used in joining all-aluminum and multi-material vehicle bodies. However, in riveting magnesium alloys, cracks always occur for its low ductility. In this paper, a hybrid joining process named friction self-piercing riveting (F-SPR), which combines mechanical joining mechanism of SPR with solid-state joining mechanism of friction stir spot welding (FSSW) by making rivet rotating at high speed in riveting process, was proposed aiming at joining the low ductility materials. 1-mm-thick AA6061-T6 and 2-mm-thick AZ31B were used to validate the effectiveness of the F-SPR process. The results showed that the F-SPR process could significantly improve the rivetability of magnesium alloys, and greatly increase the joint strength, comparing with traditional SPR process.
机译:汽车制造商迫切需要实现轻质低延展性材料,例如铝合金,镁合金和复合材料,以提高其产品的竞争力。但是,这些材料的混合使用对连接过程提出了很大的挑战。自穿孔铆接(SPR)是目前用于连接异种材料的最流行技术,已广泛用于连接全铝和多材料车身。然而,在铆接镁合金中,由于其延展性低而总是产生裂纹。本文提出了一种混合连接工艺,称为摩擦自冲铆接(F-SPR),它通过使铆钉在铆接中高速旋转而将SPR的机械连接机理与搅拌摩擦点焊(FSSW)的固态连接机理相结合。为了结合低延展性的材料,提出了这种方法。使用厚度为1毫米的AA6061-T6和厚度为2毫米的AZ31B来验证F-SPR工艺的有效性。结果表明,与传统的SPR工艺相比,F-SPR工艺可以显着提高镁合金的可熔性,并大大提高接头强度。

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