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TOWARD A METHODOLOGY FOR THE DESIGN OF BIRD-PROOF INTAKES MADE WITH COMPOSITE MATERIALS

机译:朝着用复合材料制造的防风摄入量设计的方法

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Every year, collisions between aircraft and birds cause remarkable losses. Modern aircrafts have to be certified for a proven level of bird impact resistance before being put into operational service. Nevertheless, it is not surprising if the structure of a turbofan-engine intake (basically designed to carry aerodynamic and thermal loads) collapses when colliding with a bird. The collapse of the intake is tolerated, but the fly-home capability must be guaranteed. The research work that eventually led to a methodology to develop bird-proof intakes made in composite materials is here described. It consists of two phases. In a first phase, referring to the experimental data, a bird model, feasible for the analysis of birdstrike and penetration, was developed and the dynamic behaviour of the composite material used in the intake manufacture was characterised. The numerical model of a full-scale birdstrike test was hence validated referring to a post-certification test of an actual intake and used to improve the design of the same intake. In a second phase, a full-scale birdstrike test on the improved structure was carried out using a prototype and the evidences collected are compared with the numerical results. Eventually the close numerical-experimental correlation obtained demonstrates the validity of the proposed methodology and indicates that the same approach is feasible to be extended to similar cases. Indeed, the use of this methodology leads to evident benefits: high-efficiency (low-weight and high-resistance) structures and drastic reductions in design times and costs.
机译:每年,飞机和鸟类之间的碰撞会导致造成显着的损失。在投入运营服务之前,现代飞机必须在经过验证的鸟类抗冲击程度上进行认证。然而,如果涡轮机发动机进气的结构(基本上设计用于携带空气动力学和热负荷)在与鸟碰撞时,则并不令人惊讶。摄入量的崩溃是容忍的,但必须保证飞行器的能力。此处描述了最终导致一种方法来开发在复合材料中制造的鸟类摄入量的方法的研究工作。它由两个阶段组成。在第一阶段,参考实验数据,开发了一种鸟类模型,可用于分析鸟类鸟类和渗透,并在进气制造中使用的复合材料的动态行为。因此,验证了全级Birsstrike测试的数值模型,参考了实际摄入的后经认证测试,并用于改善同一摄入的设计。在第二阶段中,使用原型进行改进结构的全级鸟枪测试,并将收集的证据与数值结果进行比较。最终获得的紧密数值实验相关性证明了所提出的方法的有效性,并表明相同的方法是可行的,可以扩展到类似的情况。实际上,这种方法的使用导致了明显的效益:高效(低重量和高电阻)结构以及设计时代和成本的急促减少。

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