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Combination of carbon fibre sheet moulding compound and prepreg compression moulding in aerospace industry

机译:航空航天工业中碳纤维片成型化合物和预浸料压缩成型的组合

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The demand for fuel efficient aircraft led to the development of innovative lightweight constructions and the use of lightweight materials, such as carbon fibre reinforced plastics. In the same manner competences in new production technologies have been built up in the aerospace industry. However, current processes for producing lightweight composites with an excellent mechanical performance cause high costs and long process cycles in comparison with approved metal processes. Furthermore the used raw materials, such as carbon fibres and resin, are very expensive. In contrast to these technologies Sheet Moulding Compound is characterised by a very high productivity, excellent part reproducibility, cost efficiency and the possibility to realise parts with complex geometries and integrated functions, e.g. inserts or colouring. The biggest disadvantage of Sheet Moulding Compound parts is a low level of stiffness and strength because of a low fibre-volume fraction, a short fibre length and isotropic fibre distribution. In this context the combination of Sheet Moulding Compound and Prepreg compression moulding in an one-shot compression moulding and curing process merges the advantages of both materials to create load-bearing and autoclave-quality parts without an autoclave. In the following article, this new technology and its potential will be presented. This paper will also deal with the resulting material characteristics.
机译:对燃油效率的需求导致了创新的轻质结构的开发和轻质材料的使用,如碳纤维增强塑料。以同样的方式在航空航天工业中建立了新生产技术的竞争力。然而,与经批准的金属工艺相比,产生具有出色机械性能的轻质复合材料的电流工艺导致高成本和长工艺循环。此外,使用的原料如碳纤维和树脂,非常昂贵。与这些技术相比,片材模塑化合物的特征在于,高生产率,优异的部分再现性,成本效率以及实现复杂几何形状和集成功能的可能性,例如,实现零件。插入或着色。由于低纤维体积分数,短纤维长度和各向同性纤维分布,片状复合件的最大缺点是低水平的刚度和强度。在这种情况下,片状压缩成型和固化过程中的片状成型化合物和预浸料压缩成型的组合合并两种材料的优点,以产生承载和高压釜的质量零件而没有高压釜。在下文中,将提出这项新技术及其潜力。本文还将处理所得到的材料特性。

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