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FE Analysis of Dynamic Response of Aircraft Windshield against Bird Impact

机译:飞机挡风玻璃对鸟类撞击动力响应的有限元分析

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摘要

Bird impact poses serious threats to military and civilian aircrafts as they lead to fatal structural damage to critical aircraft components. The exposed aircraft components such as windshields, radomes, leading edges, engine structure, and blades are vulnerable to bird strikes. Windshield is the frontal part of cockpit and more susceptible to bird impact. In the present study, finite element (FE) simulations were performed to assess the dynamic response of windshield against high velocity bird impact. Numerical simulations were performed by developing nonlinear FE model in commercially available explicit FE solver AUTODYN. An elastic-plastic material model coupled with maximum principal strain failure criterion was implemented to model the impact response of windshield. Numerical model was validated with published experimental results and further employed to investigate the influence of various parameters on dynamic behavior of windshield. The parameters include the mass, shape, and velocity of bird, angle of impact, and impact location. On the basis of numerical results, the critical bird velocity and failure locations on windshield were also determined. The results show that these parameters have strong influence on impact response of windshield, and bird velocity and impact angle were amongst the most critical factors to be considered in windshield design.
机译:鸟的撞击对军用和民用飞机造成了严重威胁,因为它们导致关键飞机部件的致命结构损坏。暴露在外的飞机部件,例如挡风玻璃,天线罩,前缘,发动机结构和叶片容易受到鸟击的伤害。挡风玻璃是驾驶舱的前部,更容易受到鸟类的撞击。在本研究中,进行了有限元(FE)仿真,以评估挡风玻璃对高速鸟类撞击的动力响应。通过在市售的显式有限元求解器AUTODYN中开发非线性有限元模型来进行数值模拟。结合弹塑性材料模型和最大主应变破坏准则,对挡风玻璃的冲击响应进行建模。利用已发表的实验结果对数值模型进行了验证,并进一步用于研究各种参数对挡风玻璃动态性能的影响。这些参数包括鸟类的质量,形状和速度,撞击角度和撞击位置。根据数值结果,还确定了临界风速和挡风玻璃上的故障位置。结果表明,这些参数对挡风玻璃的冲击响应有很强的影响,鸟的速度和冲击角是挡风玻璃设计中要考虑的最关键因素。

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  • 来源
    《International journal of aerospace engineering》 |2013年第2013期|6.1-6.12|共12页
  • 作者单位

    Laboratory of Engineering Simulation and Aerospace Computing, Northwestern Polytechnical University, Xi'an, Shaanxi 710072, China;

    Laboratory of Engineering Simulation and Aerospace Computing, Northwestern Polytechnical University, Xi'an, Shaanxi 710072, China;

    Laboratory of Engineering Simulation and Aerospace Computing, Northwestern Polytechnical University, Xi'an, Shaanxi 710072, China;

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