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Self-piercing riveted-bonded hybrid joining of carbon fibre reinforced polymers and aluminium alloy sheets

机译:碳纤维增强聚合物与铝合金薄板的自冲铆接混合连接

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The mechanical properties and failure mechanisms of self-piercing riveted-bonded hybrid joints with carbon fibre reinforced polymers (CFRP)/aluminium alloy 5754 are investigated. The effects of the sheet thickness and the ply angle of CFRP on the joints performance are analysed. Tensile shear tests were performed to determine the mechanical behaviour and failure modes of different joints. The failure fractures in the rivet holes were analysed by a scanning electron microscope to characterize the various damage mechanisms of the CFRP. The results show that the joints with 0 degrees/90 degrees ply had the optimum mechanical properties and failed by adhesive and locked structure failure, while fibre fractures, matrix cracks and delamination of CFRP were common in the joints with +/- 45 degrees ply or complex angle ply. Numerous fibre fractures and fibre peeling occurred in the rivet holes of the joints with complex angle ply, causing serious damage in the bearing region; these joints had the poorest energy absorption capacity. Increasing the CFRP thickness significantly enhanced the strength of the +/- 45 degrees ply joints and significantly increased the energy absorption of the joints with complex angle ply.
机译:研究了碳纤维增强聚合物(CFRP)/铝合金5754的自穿刺铆接混合接头的力学性能和破坏机理。分析了板厚度和CFRP的铺层角度对接头性能的影响。进行拉伸剪切试验以确定不同接头的机械性能和破坏模式。通过扫描电子显微镜分析铆钉孔中的破坏断裂,以表征CFRP的各种破坏机理。结果表明,层数为0度/ 90度的接头具有最佳的机械性能,并且由于粘合和锁定结构破坏而失效,而层数为+/- 45度的接头通常存在纤维断裂,基体裂纹和CFRP分层。复角层。夹角复杂的接头的铆钉孔中发生了许多纤维断裂和剥离,对轴承区域造成了严重破坏。这些关节的能量吸收能力最差。 CFRP厚度的增加显着增强了+/- 45度层板接头的强度,并显着提高了复杂角层板接头的能量吸收。

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