首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications >Designing composite structures for optimum in-service performance with reference to the Firefly aircraft and the Jetstream baggage pod
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Designing composite structures for optimum in-service performance with reference to the Firefly aircraft and the Jetstream baggage pod

机译:参照Firefly飞机和Jetstream行李舱设计复合结构,以实现最佳的使用性能

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摘要

When designing high-quality composites that are optimized for cost, weight and durability, the advantages and disadvantages of the materials used must be considered. This paper will discuss problems expected in the life of a composite structure, as well as the airworthiness certification of composites. In the last 20 years of Slingsby composite design and manufacture, no noteworthy in-service problems have occurred. The emphasis in this paper will therefore be on how potential in-service problems are covered by careful design and testing.The discussion of in-service performance of composites will concentrate on Slingsby Aviation's experience with the design, testing and manufacture of the Firefly all-composite aircraft. The Firefly is a two-seat aerobatic training aircraft manufactured using glass fibre and hand wet lay-up techniques.Reference will also be made to Slingsby test data relating to the performance of glass/Kevlar/Nomex honeycomb structures. This type of structure is used in the ventral baggage pod for the Jetstream 41 aircraft.
机译:在设计针对成本,重量和耐用性进行了优化的高质量复合材料时,必须考虑所用材料的优缺点。本文将讨论复合材料结构寿命中预期出现的问题,以及复合材料的适航性认证。在Slingsby复合材料设计和制造的最近20年中,没有出现值得注意的使用中问题。因此,本文的重点将放在精心设计和测试如何解决潜在的使用中问题上。关于复合材料使用中性能的讨论将集中于Slingsby Aviation在Firefly All的设计,测试和制造方面的经验,复合飞机。萤火虫是使用玻璃纤维和手湿式叠层技术制造的两座特技飞行训练飞机,还将参考Slingsby有关玻璃/凯夫拉尔/ Nomex蜂窝结构性能的测试数据。这种类型的结构用于Jetstream 41飞机的腹侧行李舱中。

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