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Clinch-Bonded and Rivet-Bonded Hybrid Joints: Application of Damage Models for Simulation of Forming and Failure

机译:弯钉连接和铆钉连接的混合接头:损伤模型在成形和破坏模拟中的应用

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摘要

The aim of this work was to simulate the failure behaviour of clinch-bonded (CB) and rivet-bonded (RB) joints using the finite element method (FEM). The Gurson-Tvergaard-Needleman (GTN) model and a ductile damage (DD) model were used as possible alternatives to simulate damage and failure of the rivet and plates, while a cohesive zone (CZ) model was employed to simulate damage and failure in the adhesive layer.The analyses were conducted using Arbitrary Lagrangian-Eulerian (ALE) adaptive meshing to avoid excessive element distortion and mass scaling to increase the minimum time increment in explicit analyses.The analyses started from three-dimensional (3-D) modelling of the rivet or clinch forming processes. Afterwards, the GTN and DD model parameters were derived using an inverse method, fitting the numerical results of simple joints (riveted, clinched) with experiments or literature data. Finally, the adhesive layer was introduced as a layer of cohesive elements. The parameters of the CZ model were determined in previous work on the adhesive. The results of the analysis were applied to the RB and CB joints, and good agreements with the corresponding experiments were found concerning the stiffness, peak load and energy absorption of the joints. The authors concluded that different damage models, tuned with experiments performed on simple joints (riveted, clinched or adhesively-bonded), can be combined in a unique model to simulate effectively the failure behaviour of hybrid RB and CB joints.
机译:这项工作的目的是使用有限元方法(FEM)模拟铆接(CB)和铆接(RB)接头的破坏行为。 Gurson-Tvergaard-Needleman(GTN)模型和延性损伤(DD)模型被用作模拟铆钉和板的损伤和破坏的可能替代方法,而内聚区(CZ)模型被用于模拟铆钉和钢板的损伤和破坏使用任意Lagrangian-Eulerian(ALE)自适应网格进行分析,以避免过度的元素变形和质量缩放,以增加显式分析中的最小时间增量。分析从三维(3-D)建模开始铆钉或铆钉成型工艺。然后,使用逆方法导出GTN和DD模型参数,将简单接头(铆接,铆接)的数值结果与实验或文献数据进行拟合。最后,将粘合剂层作为内聚元件层引入。 CZ模型的参数是在先前关于胶粘剂的工作中确定的。将分析结果应用于RB和CB接头,并在接头的刚度,峰值载荷和能量吸收方面与相应的实验取得了很好的一致性。作者得出的结论是,通过对简单接头(铆接,铆接或粘接)进行的实验调整,可以将不同的损伤模型组合到一个独特的模型中,以有效地模拟RB和CB混合接头的失效行为。

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