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Experiment-Based Explicit Dynamics Analysis for Bird Strike Damage Prediction in Composite Structures

机译:基于实验的复合结构鸟撞击预测的显式动力学分析

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Bird strike analysis is a common type of analysis performed during the design and analysis of rotorcraft. These simulations are carried out in order to predict whether various designs will pass the necessary certification tests. In the past, the only way to determine whether forward-facing aeronautical composite structures could withstand bird strikes was with time-consuming physical tests. In the research of bird striking, the bird impact test is the most effective method. But the existing data of test results are highly disperse, so that they do less help for the design of aeronautical composite structures and also cost more. Tests usually needed to be repeated several times because components often failed and were required for each new design. There is a large variability in numerical bird models, composite modeling approaches and complexity of simulation processes to design the sandwich structures of an aircraft. This paper investigates the composite structures modeling for bird strike phenomenon by using state-of-the-art modeling tools capable of predicting the experiment-based composite structural damage, damage location, failure size and failure mode due to impact and addresses a critical review on analysis techniques. This paper also demonstrates the state-of-the-art bird strike simulation methodology developed, and the accuracy of modeling approaches available in explicit codes is discussed.
机译:鸟类罢工分析是在旋翼飞行器的设计和分析期间进行的常见类型的分析。进行这些模拟,以预测各种设计是否将通过必要的认证测试。在过去,判断前瞻性航空复合结构是否能承受鸟类罢工的唯一方法是耗时的物理测试。在鸟类撞击的研究中,鸟类冲击试验是最有效的方法。但现有的测试结果数据高度分散,因此它们对航空复合结构设计的帮助较少,并且还花费更多。通常需要重复几次测试,因为组件经常失败,并且每个新设计都需要。数字鸟类模型具有很大的可变性,复合建模方法和模拟过程的复杂性设计飞机的夹层结构。本文通过利用最先进的建模工具研究了能够预测基于实验的复合结构损坏,损坏位置,故障尺寸和故障模式,对鸟类罢工现象进行建模,由于影响,损坏位置,故障尺寸和故障模式,并解决了关键评论分析技术。本文还展示了所开发的最先进的鸟类攻击模拟方法,讨论了明确代码中可用的建模方法的准确性。

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