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Production of Hybrid Tubular Metal-Fiber-Preforms: Material Characterization of Braided Hoses with a Binder

机译:杂交管状金属纤维预成型件的生产:用粘合剂的编织软管的材料表征

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Hybrid shafts or rods, where the area of load introduction is metallic (e.g. steel or aluminium) and the area of load transfer is made of fibre reinforced plastics (FRP), are an established concept for lightweight parts. Besides the monolithic FRP and the metallic areas, the overlap area of both materials is particularly important. Such parts can beneficially be produced by the use of liquid composite moulding (LCM), where the bonding process takes place during the resin curing. This is called intrinsic hybridization. Beforehand it is crucial to produce a near-net-shape preform in which the metallic end fittings for the load introduction are already integrated. To manufacture such parts constantly with a high quality, a process model of the joining by draping the braided preform is necessary. In this paper an approach for the production of hybrid preforms made of braided hoses and metallic fittings is presented in order to develop a process model. The process starts with a cylindrical multi-layer preform made of braided hoses, in which the layers are bonded by a thermoplastic binder powder. The decisive process step is the draping of the preform onto the metallic fitting. For this forming step, the material characterization of the hybrid preform plays an important role. Several material tests to determine the textile parameters of the preform are therefore evaluated and performed. Finally, the results of these tests are presented and discussed.
机译:混合轴或杆,其中负载面积介绍是金属(例如钢或铝),负载传递面积由纤维增强塑料(FRP)制成,是轻质零件的既定概念。除了单片FRP和金属区域之外,两种材料的重叠面积尤为重要。通过使用液体复合成型(LCM)可以有利地生产这些部件,其中粘合过程在树脂固化期间发生。这称为内在杂交。事先生产近净形预制件至关重要,其中负载引入的金属端部配件已经集成在一起。为了恒定地制造这些部件,需要通过覆盖编织预制件来实现连接的过程模型。本文提出了一种用于制造由编织软管和金属配件制成的混合预制件的方法,以便开发过程模型。该过程从编织软管制成的圆柱形多层预制件开始,其中层通过热塑性粘合剂粉末粘合。决定性工艺步骤是将预制件覆盖到金属配件上。对于该形成步骤,混合坯的材料表征起着重要作用。因此,评估并进行了几种材料测试以确定预制件的纺织参数。最后,提出和讨论了这些测试的结果。

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