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Assembly deformation prediction of riveted panels by using equivalent mechanical model of riveting process

机译:利用铆接工艺等效机械模型组装铆接面板的变形预测

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摘要

The assembly deformation of skin panels can be introduced by the riveting process. However, it is computationally costly and time consuming to conduct the numerical simulation of the riveting process for each rivet in skin panels. Here, an equivalent mechanical model of the riveting process is established to improve the computational efficiency of the deformation prediction for the riveted structure. The axial pressure beneath the rivet driven head is solved in the equivalent mechanical model. The assembly deformation of riveted panels is found to be influenced by the axial pressure significantly, challenging the traditional analogy of riveting to the radial expansion process. In addition, the dependence of the radial pressure upon the radial displacement of the rivet hole is established. The characteristic of non-uniform distribution of the radial pressure along the thickness direction is taken into consideration. The deformations of riveted structures are predicted considering various heights of the rivet driven head and different materials of the panel. The effectiveness of the proposed model is evaluated by comparing the deformation results of the numerical simulation and those of the experimental measurement. This investigation can help to predict the deformation of large riveted structures and improve the awareness of the effect of axial pressure on the assembly deformation.
机译:皮肤板的组件变形可以通过铆接过程引入。然而,在计算上昂贵且耗时,以进行皮板中每个铆钉的铆接过程的数值模拟。这里,建立铆接过程的等效机械模型以提高铆接结构的变形预测的计算效率。铆钉驱动头下方的轴向压力在等同的机械模型中解决。发现铆接面板的装配变形显着影响轴向压力,挑战铆接到径向膨胀过程的传统类比。另外,建立了径向压力对铆钉孔的径向位移的依赖性。考虑了沿厚度方向的径向压力不均匀分布的特性。考虑到铆钉驱动头和面板的不同材料的各种高度预测铆接结构的变形。通过比较数值模拟的变形结果和实验测量的变形结果来评估所提出的模型的有效性。本研究可以帮助预测大型铆接结构的变形,并提高轴向压力对组装变形作用的认识。

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