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Bird impact effects on different types of aircraft bubble windows using numerical and experimental methods

机译:利用数值和实验方法,鸟类对不同类型的飞机气泡窗的撞击影响

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This paper uses numerical and experimental techniques to investigate the effect of bird strike on different types of aircraft bubble windows with different geometries and materials. Three different methods, namely Lagrangian, Arbitrary Lagrangian Eulerian (ALE) and Smooth Particle Hydrodynamics (SPH) are used to simulate bird strike effects on different types of bubble windows during the impact phase. Simple tension tests are carried out on some samples to determine the behaviour of window material during impact while models reported in the literature are used for modelling the bird. First, a simple bubble window is studied numerically using the Lagrangian, ALE and SPH techniques and the results are compared with experimental data. The results from all techniques are found to be almost similar and in good agreement with the test data. This will give way to only ALE to be used for other case studies. Next, bird impacts on a two-layer bubble window with a Poly Vinyl Butyral (PVB) interlayer and a multi-walled stretch acrylic bubble window are investigated numerically. Simulations for the latter bubble window show that the structure does not have enough strength to resist the bird impact as required by the FAR25 standard conditions. For this type of bubble, two bird impact tests are carried out with speeds lower than that needed for avian certification authorities and compared with numerical results. Finally, a three-layer bubble window with a polymeric interlayer will be proposed as a new design and it will be shown that this type of bubble is capable of withstanding against bird impacts according to the FAR standard conditions.
机译:本文采用数值和实验技术研究鸟击对不同类型和不同几何形状和材料的飞机气泡窗的影响。拉格朗日,任意拉格朗日欧拉(ALE)和光滑粒子流体动力学(SPH)这三种不同的方法用于模拟撞击阶段不同类型的气泡窗上的鸟击效应。对一些样品进行简单的拉伸测试,以确定窗户材料在撞击过程中的行为,而文献中报道的模型则用于对鸟类进行建模。首先,使用拉格朗日,ALE和SPH技术对简单的气泡窗口进行数值研究,并将结果与​​实验数据进行比较。发现所有技术的结果几乎相似,并且与测试数据非常吻合。这将让位给仅ALE用于其他案例研究。接下来,数值研究了鸟类对带有聚乙烯醇缩丁醛(PVB)夹层的多层泡沫窗户和多层丙烯酸拉伸泡沫窗户的冲击。后一个气泡窗口的仿真表明,该结构没有足够的强度来抵抗FAR25标准条件所要求的鸟类撞击。对于这种类型的气泡,以低于禽类认证机构要求的速度进行了两次鸟类撞击测试,并与数值结果进行了比较。最终,将提出一种带有聚合物夹层的三层气泡窗作为一种新设计,并且将证明这种类型的气泡能够根据FAR标准条件抵御鸟类的撞击。

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