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On the development of a finite element model to analyze the behavior of hybrid composites considering the manufacturing history

机译:考虑到制造历史的有限元模型的开发分析混合复合材料的行为

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Hybrid parts are strongly moving into the focus for lightweight applications. Unfortunately, the accurate, simulative design, which comprises the accurate prediction of final part geometry, is still a challenging task. In the scope of this paper, an approach to improve the ac-curacy of appropriate finite element simulations is presented. To this end, the manufacturing history of the hybrid part is considered within the simulation of the part behavior. To create a finite element model of the considered hybrid composite, the intrinsic manufacturing process is modelled first. This includes the modelling of the thermoforming process of a fiber reinforced polymer as well as the sheet metal forming process for the fabrication of form fit elements. Then, the geometry of the hybrid part is deduced from the geometries of the single compo-nents. Afterwards, the material properties, including the local fiber volume content as well as the local fiber orientation, are mapped to the finite elements. Consequently, a workflow to cre-ate a finite element model which considers manufacturing history is developed and successful-ly tested.
机译:混合零件强烈地进入轻量级应用的重点。不幸的是,准确的模拟设计,包括准确的最终部件几何形状预测,仍然是一个具有挑战性的任务。在本文的范围内,提出了一种提高适当有限元模拟的AC-CURICATION的方法。为此,在零件行为的模拟中考虑混合部件的制造历史。为了创建所考虑的混合复合材料的有限元模型,首先是内在的制造过程。这包括纤维增强聚合物的热成型过程的建模以及用于制造形状配合元件的金属板形成过程。然后,将混合部件的几何形状从单个Compo-ints的几何形状推导出来。然后,材料特性,包括局部光纤体积含量以及局部纤维取向,映射到有限元。因此,开发和成功测试了CRE-ATE考虑制造历史的有限元模型的工作流程。

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