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LCO Flutter Analysis on Coir Pressed Mat Fibre/Epoxy Composites Plate

机译:RCO扑振纤维/环氧复合材料板上的扑振分析

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摘要

The effects of aspect ratio and fiber-epoxy weight ratio of coir fibre/epoxy composite wing idealized as flat plate on flutter speed were preliminary studied in this current research to investigate the aeroelastic response on natural fiber composite material. The usage of natural material such as coir fiber reinforced composite might become possible solutions in future since it offers lower weight, cost reduction, and preservation of the environment factor compared to presence structures like conventional glass or carbon fiber as the reinforcement for composites. For this work, the analysis of coir fiber on aeroelastic problem will be preliminary investigated to establish related data to be served, especially in the aerospace research areas. The research began with the existing raw untreated coir fiber, which was in the form of pressed mat and originally in random oriented fiber forms, were set in the composite preparation process by simple hand-lay-up and compression moulding method under the room temperature and also controlled pressure conditions. Specimen with different aspect ratios (5, 6 and 7) with 25% wt fiber reinforcement composite was installed in the wind tunnel for subsonic experimental aeroelastic test. The result shows that the plates with lower aspect ratio have higher flutter speed.
机译:在本前研究中,研究了基因纤维/环氧复合翼的纵横比和纤维 - 环氧重量比作为平板上的平板进行了初步研究,以研究天然纤维复合材料的空气弹性响应。与常规玻璃或碳纤维一样的存在结构相比,将来可能会成为未来可能的解决方案的天然材料,例如CoiR纤维增强复合材料的使用可能是可能的解决方案,因为与复合材料等常规玻璃或碳纤维这样的存在结构相比,环境因子的保存。对于这项工作,将初步调查促使促进有关数据,特别是在航空航天研究领域建立相关数据的初步调查。该研究开始于现有的原始未处理的基准纤维,其是按压垫的形式,最初是随机取向的纤维形式,通过室温下的简单手动铺设和压缩成型方法设定在复合制备方法中。还控制压力条件。具有不同纵横比(5,6和7)的标本,其中具有25%WT纤维增强复合材料,用于亚源隧道进行亚音速实验空气弹性试验。结果表明,具有较低纵横比的板具有更高的颤动速度。

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