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作 者:苏艳[1] 缪奎宗 张柱国 陆晓华[1] 左洪福[1] SU Yan;MIAO Kuizong;ZHANG Zhuguo;LU Xiaohua;ZUO Hongfu(College of Civil Aviation,Nanjing University of Aeronautics&Astronautics,Nanjing 211106,China;School of Aeronautics,Northwestern Polytechnical University,Xi'an 710072,China;Shanghai Aircraft Airworthiness Certification Center,CAAC,Shanghai 200232,China)
机构地区:[1]南京航空航天大学民航学院,南京211106 [2]西北工业大学航空学院,西安710072 [3]中国民航上海航空器适航审定中心,上海200232
出 处:《南京航空航天大学学报》2023年第5期839-850,共12页Journal of Nanjing University of Aeronautics & Astronautics
基 金:中国民航安全能力建设项目(M01190104405)。
摘 要:为有效支持无人机撞击飞机仿真分析,降低试验研究成本,开展无人机与某型运输类飞机风挡碰撞试验及有限元仿真方法研究。研究建立符合实际尺寸和曲面构型的风挡和无人机的建模方法;考虑到碰撞后风挡玻璃的裂纹萌生和扩展的不可预测性和复杂性,通过Python二次开发在风挡模型中玻璃单元间及玻璃层与胶层间嵌入零厚度内聚力单元,研究给出基于固有内聚力的风挡玻璃有限元模型。研究发现,对应工况的仿真结果与试验结果基本一致,证明内聚力模型应用在该仿真中的有效性。同时相对于常规的单元删除法,基于内聚力模型的仿真结果更加接近试验结果,证明所建立方法的精度更高。In order to effectively support the simulation analysis of unmanned aerial vehicle(UAV)impact on aircraft and reduce the cost of experimental research,the test and finite element simulation method research of collision between UAV and windshield of a transport category aircraft were carried out.The modeling method of windshield and UAV was studied and established according to the actual size and curved surface configuration.Considering the unpredictability and complexity of crack initiation and propagation of windshield glass after impact,zero-thickness cohesive elements were embedded between glass elements and between glass layer and rubber layer in the windshield model through Python programming,and the finite element model of windshield based on intrinsic cohesion was presented.It is found that the simulation results of corresponding conditions are basically consistent with the experimental results,which validates the cohesive zone model in the simulation.And compared with the conventional element deletion method,the simulation results based on the cohesive zone model are closer to the experimental results,which demonstrates that the established method has higher accuracy.
分 类 号:V223.9[航空宇航科学与技术—飞行器设计] V279V328
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