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Competitive manufacturing of 3D thermoplastic composite panels based on multi-layered woven structures for lightweight engineering

机译:竞争性制造基于多层编织结构的3D热塑性复合材料板,用于轻型工程

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Multi-layered woven structures are characterised by non-crimp fibre arrangement of the high-performance warp and weft yarns such as CF and GF, allowing optimal use of the fibre substance strength and subsequently increased the mechanical properties of their composites. This article illustrates the development and the successfully implementation of large three-dimensional (3D) thermoplastic composites as woven spacer fabrics and as woven panels with integrated stiffeners in the transversal and longitudinal direction continuously manufactured from the 3D multi-layered woven fabrics in single process step. Furthermore, it will be proved that the investigation of the mechanical properties of the composites made of the 3D multi-layered woven fabrics compared to woven fabrics with yarn-crimp provides high mechanical values, which can be significantly adjusted for the required composite components. The 3D thermoplastic composite panels as Fibre-reinforced Plastics (FRP) are excellently suited for different applications in lightweight engineering such as aircraft, automotive industry and machine engineering. (C) 2015 Elsevier Ltd. All rights reserved.
机译:多层机织结构的特征是高性能经纱和纬纱(例如CF和GF)的非卷曲纤维排列,从而可以最佳地利用纤维物质的强度,并随后提高其复合材料的机械性能。本文说明了大型三维(3D)热塑性复合材料的开发和成功实施,该复合材料既是织造的间隔织物,又是在横向和纵向方向上由一体的增强材料制成的机织面板,由3D多层织造织物在单个工艺步骤中连续制造而成。此外,将证明,与具有纱线卷曲的机织织物相比,由3D多层机织织物制成的复合材料的机械性能研究提供了较高的机械值,可以针对所需的复合材料组件进行显着调整。作为纤维增强塑料(FRP)的3D热塑性复合材料面板非常适合轻型工程的不同应用,例如飞机,汽车工业和机械工程。 (C)2015 Elsevier Ltd.保留所有权利。

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