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首页> 外文期刊>International Journal of Fatigue >Effect of load transfer by friction on the fatigue behaviour of riveted lap joints
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Effect of load transfer by friction on the fatigue behaviour of riveted lap joints

机译:摩擦载荷传递对铆接搭接接头疲劳性能的影响

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摘要

An experimental investigation of load transmission throughout a riveted lap joint is presented with a focus on the role of friction. The main objective was to generate results to be utilized in a semi-empirical model for predicting the fatigue life of riveted joints, which is being developed by the authors. The test variables accounted for in the experiments were the rivet squeeze force and the faying surface condition. Triple-row riveted lap joint coupons of aluminium alloy 2024-T3 Alclad sheets intended to be a simple representation of longitudinal connections in the aircraft fuselage skin structure were assembled with two different rivet squeeze forces. For either force half of the joints had a thin Teflon interfoil in the overlap area in order to minimize friction between the sheets. Friction measurements reveal that, contrary to the friction coefficient between the Alclad mating surfaces, the friction coefficient between the Teflon and Alclad contact surfaces is considerably lower and does not increase with the cycle number. A convenient method of the determination of load transmission throughout a lap joint is proposed utilizing measurements by strain gauges mounted on only outer surfaces of the overlapping sheets supplemented by the secondary bending analysis according to a simple theoretical model. The results obtained indicate that the effect of the squeeze force and the faying surface condition on axial forces in the overlapping sheets is quantitatively insignificant. It is noted that an analytical procedure commonly used to compute axial forces in the sheets of joints with mechanical fasteners considerably underestimates load transfer by the critical, outer rivet rows. Comparative fatigue tests on the riveted coupons with the Teflon interlayer and without such a layer reveal superior fatigue lives of the former. These results demonstrate, contrary to the prevailing opinion, an overall detrimental influence of frictional load transfer at applied stress values representative of those experienced in service by lap splices of the aircraft fuselage. Post-failure examinations of the riveted joints provide evidence that the crack initiation locations and crack paths depend on the test variables and the stress level. For the uncoated joints, the effect of the squeeze force and applied load on the area of fretted regions around the rivet holes was noted, whilst the total roughness heights did not exhibit such a dependency. It is shown that the present and reported in other works experimental results on the effect of coatings on the fatigue performance of riveted joints cannot be explained based on FE stress analyses available in the literature due to simplifications involved in modelling the faying surface condition. A major conclusion of the present work is that because of the extremely complex determinants of frictional load transfer, its effect on the fatigue behaviour of riveted joints can only be predicted using a semi-empirical approach.
机译:进行了整个铆接搭接接头载荷传递的实验研究,重点是摩擦的作用。作者的主要目的是要产生可用于预测铆接接头疲劳寿命的半经验模型的结果。实验中考虑的测试变量是铆钉挤压力和搭接表面条件。用两个不同的铆钉挤压力组装了铝合金2024-T3 Alclad板的三排铆接搭接试样,该试样旨在简单地表示飞机机身蒙皮结构中的纵向连接。对于任一力,一半的接头在重叠区域都具有薄的Teflon翼面,以使板之间的摩擦最小。摩擦测量表明,与Alclad配合表面之间的摩擦系数相反,Teflon和Alclad接触表面之间的摩擦系数相当低,并且不会随循环次数而增加。根据简单的理论模型,提出了一种方便的方法来确定整个搭接处的载荷传递,该方法是利用仅安装在重叠板外表面的应变仪进行测量,并辅以二次弯曲分析。所获得的结果表明,挤压力和搭接表面条件对叠片中轴向力的影响在数量上是微不足道的。应当指出,通常用于计算使用机械紧固件的接头板中的轴向力的分析程序大大低估了关键的外部铆钉行的载荷传递。在带有特富龙夹层且没有这种层的情况下,对铆接试样进行的比较疲劳试验表明,前者具有更好的疲劳寿命。与普遍观点相反,这些结果证明了在施加应力值下摩擦载荷传递的整体有害影响,该应力值代表飞机机身的搭接处在使用中所经历的应力值。铆接接头的失效后检查提供了证据,表明裂纹的起始位置和裂纹路径取决于测试变量和应力水平。对于未涂层的接头,注意到挤压力和所施加的载荷对铆钉孔周围的有毛区域的面积的影响,而总粗糙度高度并未表现出这种依赖性。结果表明,由于简化了搭接表面条件的建模,因此无法基于文献中的有限元应力分析来解释目前和其他工作中关于涂层对铆接接头疲劳性能影响的实验结果。本工作的主要结论是,由于摩擦载荷传递的决定因素极其复杂,因此只能通过半经验方法来预测其对铆接接头疲劳性能的影响。

著录项

  • 来源
    《International Journal of Fatigue 》 |2016年第9期| 1-11| 共11页
  • 作者单位

    AGH University of Science and Technology, Faculty of Mechanical Engineering and Robotics, al. A. Mickiewicza 30, 30-059 Krakow, Poland;

    AGH University of Science and Technology, Faculty of Mechanical Engineering and Robotics, al. A. Mickiewicza 30, 30-059 Krakow, Poland;

    AGH University of Science and Technology, Faculty of Mechanical Engineering and Robotics, al. A. Mickiewicza 30, 30-059 Krakow, Poland;

    AGH University of Science and Technology, Faculty of Mechanical Engineering and Robotics, al. A. Mickiewicza 30, 30-059 Krakow, Poland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Riveted joints; Load transfer; Fatigue tests; Contact surface; Fretting;

    机译:铆接;负荷转移疲劳测试;接触面;微动;

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