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Fatigue failure modes in self-piercing riveted aluminium alloy joints

机译:自刺穿铆接铝合金接头疲劳失效模式

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Self-piercing riveting, as an alternative joining method to spot-welding, has attracted considerable interest from the automotive industry and has been widely used in aluminium intensive vehicles. One of the important factors that need to be considered is the effect of cyclic loading in service, leading to possible fatigue failure. The previous work reported in the public domain on the behaviour of self-piercing rivets has mainly focused on static tests. The work which is reported in this paper is concerned with the fatigue behaviour of single-rivet joints, joining two 2mm 5754 aluminium alloy sheets. The investigation also examined the effect of interfacial conditions on the fatigue behaviour. A number of fatigue failure mechanisms were observed based on rivet fracture, sheet fracture and combinations of these. The investigation has shown that they were dependent on the applied load and the sheet surface condition. Three-parameter Weibull analysis, using Reliasoft Weibull ++5.0 software, was conducted to analyse the experimental results. The analysis enabled the prediction of early-type failure (infant mortality failure) and wear-out failure patterns depending on the condition of the self-piercing riveted joints and the alloy sheet surface.
机译:作为一种替代的焊接方法,自刺穿铆接,吸引了汽车行业的相当兴趣,并广泛用于铝密集型车辆。需要考虑的重要因素之一是循环载荷在服务中的影响,导致可能的疲劳失败。在公共领域报告的自我穿孔铆钉行为的前一项工作主要集中在静态测试上。本文报道的工作涉及单铆接接头的疲劳行为,加入两个2mm 5754铝合金板材。调查还研究了界面条件对疲劳行为的影响。基于铆钉骨折,薄片骨折和这些组合观察了许多疲劳破坏机制。调查表明,它们依赖于施加的载荷和片材表面条件。进行三参数Weibull分析,使用Reliasoft Weibull ++ 5.0软件进行了分析实验结果。根据自刺穿铆接接头和合金板表面的条件,该分析使得预测早期型故障(婴儿死亡衰竭)和磨损失效图案。

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