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Design of aircraft structures against threat of bird strikes
Authors:Jun LIU  Yulong LI  Xiancheng YU  Xiaosheng GAO  Zongxing LIU
Institution:1. School of Aeronautics, Northwestern Polytechnical University, Xi’an 710072, China;2. Dyson School of Design Engineering, College of Engineering, Imperial College, London sw71na, UK;3. Department of Mechanical Engineering, the University of Akron, Akron, OH 44325, USA
Abstract:In this paper, a method to design bird-strike-resistant aircraft structures is presented and illustrated through examples. The focus is on bird strike experiments and simulations. The explicit finite element software PAM-CRASH is employed to conduct bird strike simulations, and a coupled Smooth Particles Hydrodynamic (SPH) and Finite Element (FE) method is used to simulate the interaction between a bird and a target structure. The SPH method is explained, and an SPH bird model is established. Constitutive models for various structural materials, such as aluminum alloys, composite materials, honeycomb, and foam materials that are used in aircraft structures, are presented, and model parameters are identified by conducting various material tests. Good agreements between simulation results and experimental data suggest that the numerical model is capable of predicting the dynamic responses of various aircraft structures under a bird strike, and numerical simulation can be used as a tool to design bird-strike-resistant aircraft structures.
Keywords:Bird strike  Cover sheet  Design of aircraft structures  Horizontal tail  Vertical tail
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