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Macroscopic Modelling of Flow-Drill Screw Connections

机译:流动钻螺杆连接的宏观造型

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This study focuses on the modelling of Flow-Drill Screw (FDS) connections in large-scale shell analyses. Macroscopic connection models for large-scale crash simulations were assessed for modelling of FDS connections between two aluminium plates. Of the investigated models were two commercial element-based and three commercial constraint-based models, as well as two new user-defined element-based models. All models were calibrated using cross tests in tension, shear and a mixed shear/tension mode. In order to assess the flexibility of the models two sets of experimental data were used. In the first one, a small screw was used to join two sheets of the same rolled alloy while the second set used a longer screw with a larger head to join a rolled alloy to an extrusion. The calibrated models were validated using a two-step approach involving benchmark and component tests. Of the commercial models, the constraint-based performed better than the element-based. The new user-defined models gave similar results as the commercial constraint-based models. From the obtained results, recommendations for modelling of FDS connections for large-scale analyses were formulated.
机译:本研究侧重于大规模壳体分析中流动钻螺钉(FDS)连接的建模。评估了大规模碰撞模拟的宏观连接模型,用于两个铝板之间的FDS连接建模。调查模型是两个基于商业元素和三个基于商业约束的模型,以及两个新的基于用户定义的基于元素的模型。所有型号使用张力,剪切和混合剪切/张力模式的交叉测试校准。为了评估模型的灵活性,使用两组实验数据。在第一螺钉中,使用小螺钉加入两片相同的轧制合金,而第二组使用具有较大头部的较长螺钉以将轧制合金加入挤出物。使用涉及基准和组件测试的两步方法进行验证校准模型。在商业模型中,基于约束的基于元素的表现优于基于元素。新的用户定义模型将类似的结果与基于商业约束的模型相似。从获得的结果,制定了用于对大规模分析进行大规模分析建模的建议。

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