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Lightweight Potential of 3D Endless Fiber Reinforcement of Polyurethane Foam Cores with Spacer Fabrics in Hybrid Sandwich Structures with Fiber Reinforced Thermoplastic Facings

机译:用纤维增强热塑性面板的杂交夹层结构中具有间隔织物的聚氨酯泡沫芯的3D无尽纤维增强的轻质潜力

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Sandwich structures consisting of fibre-reinforced plastic (FRP) facings and core are ideally suited as substitution materials for reducing component masses. The endless fibre reinforcement has the greatest performance potential. Both thermoset and thermoplastics are already being processed into endless fibre-reinforced sandwich facings according to the state of the art. The 3D endless fibre reinforcement of cores is a current research topic. This paper describes the development of a hybrid sandwich consisting of thermoplastic composite facings and an innovative core composite. This is made of polyurethane (PUR) rigid or flexible foam, which is reinforced with spacer fabric. The sandwich manufacturing in Reaction Injection Moulding (RIM) includes the original forming of the core and the simultaneous bonding of the facings. This efficient process offers the potential for the production of such complex structures in medium or large series. The sandwich structures and their individual components were characterised in the standardised compression and bending test. The lightweight potential of spacer fabric reinforcement is demonstrated by comparing the specific mechanical properties of sandwich structures with and without core reinforcement. In comparison to reinforced and unreinforced foams, the effect of sandwich design is also shown.
机译:由纤维增强塑料(FRP)面板和核心组成的夹层结构非常适合作为减少组分质量的替代材料。无尽的纤维增强具有最大的性能潜力。将热固性和热塑性塑料两者都是根据现有技术的环形纤维增强的夹层面对。核心的3D无尽纤维增强是目前的研究主题。本文介绍了由热塑性复合面板和创新芯复合材料组成的混合夹层的开发。这由聚氨酯(PUR)刚性或柔性泡沫制成,其用间隔织物加强。反应注射成型(轮辋)的夹心制造包括原始成型芯和面部的同时粘合。这种有效的过程提供了在中或大系列中生产这种复杂结构的可能性。夹心结构及其各个组分的特征在于标准化的压缩和弯曲试验。通过将夹层结构的特定机械性能与芯加强件进行比较,通过比较夹层结构的特定机械性能来证明间隔织物加强件的轻质电位。与加强和未合成的泡沫相比,还显示了夹层设计的效果。

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