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Finite element analysis regarding the forming behaviour of symmetric hybrid structures consisting of two sheet metal outer layers and a thermoplastic core

机译:关于由两个钣金外层和一个热塑性塑料芯组成的对称混合结构的成形行为的有限元分析

摘要

To face challenges like damping effects or weight reduction in the automotive sector, new hybrid material combinations are developed. One possibility is the combination of several symmetric material layers with varying material characteristics to achieve in the component production less weight and appropriate stiffness in comparison to components produced with sheet metal. This article deals with the characterization of deep drawing behaviour of layered sandwich structures. The behaviour of the several layers and the layer interaction have been taken into account for the technical design of a deep drawing process. A material layer characterization is performed. Instabilities as interlaminar failures, ruptures or wrinkling of the structure have been investigated as part of additional experimental characterization tests on the basis of various deep drawing process parameters. Finally, the experimental data is used as input for the numerical modelling and simulation of layered structures. The FE simulation includes the material behaviour of the layers and layer interactions with cohesive zone modelling. Based on the results an important contribution for prediction accuracy in the numerical simulation has been provided.
机译:为了在汽车领域面对诸如减震效果或减轻重量的挑战,开发了新的混合材料组合。一种可能性是将具有不同材料特性的多个对称材料层组合在一起,以实现与薄板生产的部件相比,部件生产的重量更轻,刚度更高。本文讨论了分层夹层结构的深拉行为。深度绘制过程的技术设计已考虑到了几层的行为和层之间的相互作用。进行材料层表征。作为层间破坏,结构破裂或起皱的不稳定性,已根据各种深冲工艺参数作为附加实验表征测试的一部分进行了研究。最后,将实验数据用作层状结构数值模拟和仿真的输入。有限元模拟包括层的材料行为以及具有内聚区建模的层相互作用。基于这些结果,为数值模拟中的预测精度提供了重要的贡献。

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