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Study of the impact of riveting sequence, rivet pitch, and gap between sheets on the quality of riveted lap joints using finite element method

机译:用有限元方法研究铆接顺序,铆钉间距和板间间隙对搭接搭接接头质量的影响

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摘要

Sheet metal parts are widely used in the assembly of aircraft. The most common method of joining sheet metal parts is through riveting. There are many parameters associated with a riveting process that affect the quality of rivets and the integrity of the final assembled product. This paper presents a study on the effect of some controllable process parameters in riveting (i.e., the sequence of riveting, distance between rivets (pitch), and gap between sheets) on the quality of riveted lap joints and the formed rivets. The study is performed on a one eight-inch nominal diameter flat head Tinner rivet and 0.064-in.-thick aluminum sheet. Finite element simulation is used as a means of modeling and analysis of the riveting process. Statistical design of experiment is employed to analyze the simulation data. A good combination of riveting process parameters is found which minimizes the residual stress in sheets and rivets, bulging and material growth in sheets, and which reduces the chances of postriveting clearance in a riveted lap joint.
机译:钣金零件广泛用于飞机的组装。连接钣金零件的最常见方法是铆接。与铆接过程相关的许多参数会影响铆钉的质量和最终组装产品的完整性。本文介绍了一些可控制的工艺参数在铆接中的影响(即铆接顺序,铆钉之间的距离(节距)和薄板之间的间隙)对铆接搭接接头和成形铆钉质量的影响。该研究是在标称直径为8英寸的平头Tinner铆钉和0.064英寸厚的铝板上进行的。有限元模拟被用作铆接过程建模和分析的一种手段。采用实验统计设计方法对仿真数据进行分析。发现了铆接工艺参数的良好组合,可以最大程度地减小薄板和铆钉中的残余应力,凸出和薄板中的材料生长,并减少铆接搭接接头中铆接间隙的机会。

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