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Textile-based surface design of thermoplastic composites for microstructural adhesion to polyurethane foams for lightweight structures

机译:基于纺织品的热塑性复合材料表面设计,用于轻质结构的聚氨酯泡沫微结构粘附

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摘要

In an effort to reduce the mass of components, sandwich design has become well established above all in the aerospace and the vehicle construction. In these structures, facings and cores made of very different materials are joined using a wide variety of technologies. The challenge in the use of this type of construction frequently results both from generating component joints stable enough to bear loads and the productivity of the manufacturing process. This publication investigates the textile-based surface design of thermoplastic composites which create optimised conditions for the bonding of Polyurethane (PUR) foam cores in the in-situ foaming. The reinforcement layer structure is represented on the surface by varying the layer stack in the production of textile-based thermoplastic composites through pressing. This approach is resource and energy-efficiency because it includes no additional process steps. Two thermoplastic composite variants with differently firmed textile surface structure were manufactured and analysed. In reaction injection moulding, each variant was processed with two different PUR foam cores to obtain sandwich structures. Bonding between the facings and the core was only achieved by means of textile microstructuring, which was demonstrated in the analysis of the basic materials and the microstructure penetration through PUR foam as well. The mechanical capacity of the interface was determined by the sandwich structures in the tensile test. In future studies, a bulky, textile-based lightweight construction material in sandwich design that is both suitable for application and capable of being mass produced will be developed based on these investigations.
机译:在努力降低部件的质量,夹层设计已经成为远高于所有在航空航天和汽车结构建立的。在这些结构中,提出了非常不同的材料的面层和芯使用的是各种各样的技术接合。在使用这种类型的结构的挑战,经常从生成组件关节稳定承担足够的负荷和制造工艺的生产率导致两者。该出版物调查其创建用于聚氨酯(PUR)泡沫芯在原位起泡的接合优化条件的热塑性复合材料的基于织物的表面设计。加强层结构是通过改变按压在生产基于织物的热塑性复合材料的层堆叠的表面上表示。这种方法是资源和能源利用效率,因为它不包括附加的工艺步骤。两个具有不同坚挺织物表面结构的热塑性复合变体制造和分析。在反应注射成型,每种变体与两种不同的PUR泡沫芯处理以获得夹层结构。饰面和芯之间的结合仅被纺织微结构,这是在基本材料和通过PUR泡沫微结构穿透的分析表明,以及来实现。界面的机械容量通过在拉伸试验中的夹层结构来确定。在今后的研究中,在夹层设计一个庞大的,以纺织为主轻质结构材料,既适合于应用和能够大批量生产将根据这些调查开发。

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