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Mould design and manufacturing considerations of honeycomb biocomposites with transverse fibre direction for aerospace application

机译:用于航空应用横向纤维方向的蜂窝生物复合材料的模具设计和制造考虑

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Sandwich structures with honeycomb core are known to significantly improve stiffness at lower weight and possess high flexural rigidity. They have found wide applications in aerospace as part of the primary structures, as well as the interior paneling and floors. High performance aluminum and aramid are the typical materials used for the purpose of honeycomb core whereas in other industries, materials such as fibre glass, carbon fibre, Nomex and also Kevlar reinforced with polymer are used. Recently, growing interest in developing composite structures with natural fibre reinforcement has also spurred research in natural fibre honeycomb material. The majority of the researches done, however, have generally emphasized on the usage of random chopped fibre and only a few are reported on development of honeycomb structure using unidirectional fibre as the reinforcement. This is mainly due to its processing difficulties, which often involve several stages to account for the arrangement of fibres and curing. Since the use of unidirectional fibre supports greater strength compared to random chopped fibre, a single-stage process in conjunction with vacuum infusion is suggested with a mould design that supports fibre arrangement in the direction of honeycomb loading.
机译:众所周知,夹层结构具有蜂窝芯,可显着提高重量较低的刚度并具有高弯曲刚性。它们在航空航天中找到了广泛的应用,作为主要结构的一部分,以及内部镶板和地板。高性能铝和芳纶是用于蜂窝核心的典型材料,而在其他行业中,使用纤维玻璃,碳纤维,Nomex和kevlar用聚合物加固的材料。最近,对具有天然纤维增强件的复合结构的发展兴趣也在天然纤维蜂窝材料中进行了刺激。然而,完成了大部分研究通常强调了随机切碎纤维的使用,并且只有少数人使用单向纤维作为增强的蜂窝结构的开发。这主要是由于其处理困难,这通常涉及几个阶段来解释纤维和固化的排列。由于与随机切碎的纤维相比,使用单向纤维的强度较大,因此提出了一种与真空输注一起的单级过程,模具设计呈蜂窝装载方向上的纤维布置。

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