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首页> 外文期刊>Journal of Manufacturing Processes >Development of an end-to-end simulation process chain for prediction of self-piercing riveting joint geometry and strength
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Development of an end-to-end simulation process chain for prediction of self-piercing riveting joint geometry and strength

机译:开发端到端仿真过程链,用于预测自刺穿铆接关节几何和强度

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摘要

Self-piercing riveting (SPR) is one of the advanced mechanical joining techniques used intensively in modern automobiles. SPR is a cold forming process involving a semi-tubular rivet as fastener to join two or three similar or dissimilar materials. The present study deals with the development of a five-step simulation process chain capable of numerically predicting the SPR joint geometry and the joint strength under different loading conditions such as Shear, Cross-tension and Peel loading. The complete process chain considers a 2D axisymmetric model for the process simulation and a 3D simulation model with solid-shell interaction for the joint failure simulation. The calibration of damage models and their application in the joint strength analysis are integral parts of the present study. The comparison of joint strength analysis results with experiments under the criteria: mode of joint failure, maximum force (indicating joint failure) and displacement at maximum force provides basis for validation of the simulation process chain. Additionally, a comparison of joint geometry with joint cross-section images and force-displacement curves from experiments provides an opportunity for an intermediate verification of the numerical process flow. The study also presents an accuracy comparison of different damage models and the impact of rivet setting depth on the joint strength and mode of joint failure.
机译:自穿刺穿铆接(SPR)是现代汽车密集使用的先进机械连接技术之一。 SPR是一种冷成型过程,包括半管状铆钉,如紧固件加入两种或三种类似或不同材料。本研究涉及开发五步模拟过程链,其能够在不同的负载条件下以数值预测SPR关节几何形状和关节强度,例如剪切,交叉张力和剥离负荷。完整的过程链考虑了用于过程模拟的2D轴对称模型和具有用于关节故障仿真的固态外壳交互的3D仿真模型。损坏模型的校准及其在关节强度分析中的应用是本研究的组成部分。关节强度分析结果与实验在标准下的实验:关节故障模式,最大力(指示关节故障)和最大力的位移为仿真过程链的验证提供了依据。另外,从实验中具有关节截面图像的关节几何和力 - 位移曲线的比较提供了用于中间验证数值处理流程的机会。该研究还提出了不同损伤模型的准确性比较和铆钉设定深度对关节强度和关节故障模式的影响。

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