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Modelling of Riveted Joints with a New Rivet Element

机译:用新的铆钉元件建模铆接关节

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Riveting is a well established technology in the manufacturing of aeronautical structures as well as in the automotive industries. Despite its simplicity, the rivet presents a local stiffness that is not easy to properly model within a large finite element analysis. However, precision in the local stiffness evaluation is essential to perform any structural analysis when several rivet are applied in a joint structure. The result is that any rivet requires a local mesh refinement or, and this is the most common case, a drastic simplification of its structural modelling characteristics. In the present paper the structural behavior of a riveted lap joint connection was investigated experimentally and numerically using a new rivet finite element. The Rivet Element, based on a closed-form solution of a theoretical model of the rivet joint, is able to precisely evaluate, in FE analysis, both local and overall stiffness of riveted joints with a very low contribution of dofs. A comparison with a joint model performed with very refined non-linear 3D model of rivet and with experimental data is performed and a good agreement is demonstrated.
机译:铆接是制造航空结构以及汽车行业的知名技术。尽管其简单性,铆钉呈现出局部刚度,其在大的有限元分析中不易妥善模型。然而,当在接合结构中施加几个铆钉时,局部刚度评估中的精度对于执行任何结构分析至关重要。结果是,任何铆钉都需要局部网格细化,或者这是最常见的情况,其结构建模特性的急剧简化。在本文中,使用新的铆钉有限元在实验和数值上进行铆接圈联合连接的结构行为。基于铆钉接头的理论模型的闭合形式溶液的铆钉元件能够精确地评估Fe分析,具有铆接接头的局部和总刚度,具有非常低的DOF的贡献。执行与具有非常精炼的非线性3D模型和实验数据进行的与具有非常精制的非线性3D模型进行的联合模型进行比较,并证明了良好的一致性。

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