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Process and performance characteristics of an improved friction-stir riveting process

机译:改进摩擦搅拌铆接过程的过程和性能特征

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Friction-stir riveting is a new mechanical fastening technique developed in recent years. It combines the spinning and extruding actions of friction-stir spot welding, and the interlocking created by embedding a rivet in the sheets in self-piercing riveting, producing a joint which strength stems from a compact stirred or mixed zone, an embedded solid rivet, and solid bonding. In this study a set of improved rivet design and tooling, based on the understanding of friction-stir riveting process and the joint formation gained in previous investigations, was used to join aluminum alloy sheets. The evolution of microstructure during riveting was investigated using the new rivet and tooling, and the joint structural characteristics were analyzed. A detailed study was also conducted on the effect of rivet depth of feed, the joint structures created, and the performance of these joints, compared with those using the previous rivet design and tooling. Afterwards, a statistical analysis was conducted to optimize the riveting process. Using the new rivet and tooling, and optimized riveting parameters, joints with peak load consistently exceeding 8 kN were obtained in joining 2-mm AA5052 sheets. The strength of the new friction-stir riveted joints is much higher than those obtained through other mechanical joining techniques, and even higher than resistance spot welding in joining aluminum sheets.
机译:摩擦搅拌铆接是一种新的机械紧固技术,近年来发展。它结合了摩擦搅拌点焊的纺丝和挤出动作,并通过将铆钉在自刺铆接中嵌入纸张中的铆接来产生互锁,从而产生强度从紧凑的搅拌或混合区,嵌入式固体铆钉栓塞的接头,和坚固的粘合。在本研究中,基于对摩擦搅拌铆接过程的理解和先前研究中获得的关节形成的一组改进的铆钉设计和工具用于加入铝合金板。利用新的铆钉和工具研究了铆接期间微观结构的演化,分析了关节结构特征。还对饲料深度的效果进行了详细的研究,与使用以前的铆钉设计和工具的人相比,产生的联合结构和这些关节的性能。然后,进行统计分析以优化铆接过程。使用新的铆钉和工具,以及优化的铆接参数,在连接2mM AA5052片材中获得始终超过8kN的峰值负荷的接头。新的摩擦搅拌铆接接头的强度远高于通过其他机械连接技术获得的关节,甚至高于连接铝板中的抵抗点焊接。

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