首页> 外文期刊>International Journal of Crashworthiness >Crashworthiness analysis of an aircraft fuselage section with an auxiliary fuel tank using a hybrid multibody/plastic hinge approach
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Crashworthiness analysis of an aircraft fuselage section with an auxiliary fuel tank using a hybrid multibody/plastic hinge approach

机译:使用杂交多体/塑料铰链接近使用辅助燃料箱的飞机机身段的耐火性分析

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摘要

The drop test of a Boeing-737 fuselage section is modelled using a multibody (MB) with spatial plastic hinge method. The test is simulated in MADYMO to evaluate the structural interaction of the cabin with a stiff auxiliary fuel tank underneath the floor, in a severe but survivable impact condition. The fuselage ribs, cargo door frame, cargo door, and passenger floor with spar webs are modelled using a large number of bodies and universal joints with directional properties to allow for appropriate torsional and bending deformations. The contacts for the fuselage section are modelled using a Hertzian-based contact force model with dissipative damping. The simulation results from the MB approach show reasonably good agreement with those from the experimental test and from a detailed finite element (FE) model. This MB approach then could be a viable tool in modelling occupant and structural deformations for aircraft crashworthiness problems.
机译:波音-737机身段的跌落试验使用具有空间塑料铰链法的多体(MB)进行建模。在MADYMO中模拟了测试,以评估机舱与地板下方的硬辅助燃料箱的结构相互作用,严重但可生存的冲击条件。机身肋,货物门框,货物门和带翼刀网的客车地板使用大量的机身和通用接头进行建模,具有方向性,以允许适当的扭转和弯曲变形。机身部分的触点是使用具有耗散阻尼的赫兹型接触力模型进行建模。 MB方法的仿真结果显示与实验试验和来自详细有限元(FE)模型的合理吻合。然后,这种MB方法可以是建模乘员和结构变形的可行工具,用于飞机崩溃问题。

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