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Experimental validation of numerical structural dynamic models for metal plate joining techniques

机译:金属板连接技术数值结构动力模型的实验验证

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摘要

Joined structures are of high industrial relevance. The dynamic effects of joints are however often practically difficult to accurately account for in numerical models, as they often lead to local changes in stiffness and damping. This paper discusses the comparison between measurements and simulations of joined panels considering four different joining techniques: adhesive bonding, metal inert gas welding, resistance spot welding and flow drill screwing. An experimental modal analysis is performed on the different systems and the Power Injection Method is applied to determine the loss factors of single plate systems and their joined counterparts. The joined panels are modeled in a holistic simulation environment with particular focus on the joining region, by application of predefined and generic joint models. A very good agreement is obtained between the simulated dynamic behavior and the experimental results, showing that an accurate representation of the joints has been obtained.
机译:加入结构具有高工业相关性。然而,关节的动态效果通常难以在数值模型中准确地算作,因为它们通常导致刚度和阻尼的局部变化。本文讨论了考虑四种不同连接技术的加入面板测量和模拟的比较:粘合剂,金属惰性气体焊接,电阻点焊和流动钻孔。在不同的系统上进行实验模态分析,并应用功率注射方法来确定单板系统的损耗因子及其连接的对应物。通过应用预定义和通用联合模型,加入的面板在整体模拟环境中建模,特别侧重于加入区域。在模拟动态行为和实验结果之间获得了非常好的一致性,表明已经获得了关节的准确表示。

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