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Evaluation of Joint Formation and Mechanical Performance of the AA7075-T6/CFRP Spot Joints Produced by Frictional Heat

机译:摩擦热产生的AA7075-T6 / CFRP点焊接头的接头形成和力学性能评估

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摘要

The development of lightweight hybrid metal–polymer structures has recently attracted interest from the transportation industry. Nevertheless, the possibility of joining metals and polymers or composites is still a great challenge. Friction Spot Joining (FSpJ) is a prize-winning friction-based joining technique for metal–polymer hybrid structures. The technology is environment-friendly and comprises very short joining cycles (2 to 8 s). In the current work, aluminum alloy 7075-T6 and carbon-fiber-reinforced polyphenylene sulfide (CF-PPS) friction spot joints were produced and evaluated for the first time in the literature. The spot joints were investigated in terms of microstructure, mechanical performance under quasi-static loading and failure mechanisms. Macro- and micro-mechanical interlocking were identified as the main bonding mechanism, along with adhesion forces as a result of the reconsolidated polymer layer. Moreover, the influence of the joining force on the mechanical performance of the joints was addressed. Ultimate lap shear forces up to 4068 ± 184 N were achieved in this study. A mixture of adhesive–cohesive failure mode was identified, while cohesive failure was dominant. Finally, a qualitative comparison with other state-of-the-art joining technologies for hybrid structures demonstrated that the friction spot joints eventually exhibit superior/similar strength than/to concurrent technologies and shorter joining times.
机译:轻型混合金属-聚合物结构的开发最近引起了运输行业的兴趣。然而,连接金属和聚合物或复合材料的可能性仍然是一个巨大的挑战。摩擦点连接(FSpJ)是一种屡获殊荣的基于摩擦的金属-聚合物混合结构连接技术。该技术对环境友好,并且连接周期非常短(2至8 s)。在当前的工作中,铝合金7075-T6和碳纤维增强的聚苯硫醚(CF-PPS)摩擦点接头已被生产出来,并在文献中进行了首次评估。从微观结构,准静态载荷下的机械性能和破坏机理方面对点缝进行了研究。宏观和微观机械互锁被认为是主要的粘合机制,再固结的聚合物层也导致了粘合力。此外,解决了接合力对接头机械性能的影响。在这项研究中,最终的搭接剪切力达到了4068±184N。确定了粘合剂-内聚破坏模式的混合物,而内聚破坏占主导。最后,与其他用于混合结构的最新接合技术进行定性比较,结果表明,摩擦点接合点最终比同类技术具有更高的强度/相似的强度,并且接合时间更短。

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