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Comparison of Residual Stress State on Sheets Faying Surface after Standard and NACA Riveting-Numerical Approach

机译:标准和NACA铆接-数值方法后板材在表面上的残余应力状态的比较

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摘要

One crucial characteristic of the aircraft structure are fatigue properties and rivets are usually critical areas in metal airframes due to fatigue cracks nucleation. According to literature, the NACA riveting method offers a huge increase in fatigue life of riveted lap joints. This paper presents FE simulations of quasi-static riveting on a press for standard countersunk rivets and the NACA riveting in two configurations: with a normal brazier rivet and a brazier rivet with a compensator. The analyzed configurations have been compared based on the stress courses on the sheets faying surfaces after riveting process. Due to a lack of data, the rivet length and the squeezing force value were assumed for NACA riveting based on FE simulations. The results indicated beneficial influence of the NACA riveting in the outer sheet (with a countersunk) and disadvantageous influence in the inner sheet. This effect was stronger in the case of the rivet with a compensator.
机译:飞机结构的一个关键特性是疲劳性能,而铆钉通常由于疲劳裂纹成核而成为金属机身的关键区域。根据文献,NACA铆接方法大大延长了铆接搭接接头的疲劳寿命。本文介绍了标准沉头铆钉在压机上准静态铆接的有限元模拟,以及两种配置下的NACA铆接:普通钎焊铆钉和带补偿器的钎焊铆钉。根据铆接过程后薄板贴合表面上的应力变化对已分析的构型进行了比较。由于缺乏数据,因此基于有限元模拟,假定了NACA铆钉的铆钉长度和挤压力值。结果表明,NACA铆接在外层板中(带有沉头孔)具有有利影响,而在内层板中则具有不利影响。在带有补偿器的铆钉的情况下,这种效果更强。

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