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Development of a finite element model for comparing metal and composite fuselage section drop testing

机译:开发用于比较金属和复合机身截面跌落测试的有限元模型

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摘要

Part of the work of AircraftFire, a project investigating the effects of fire and crash on aircraft survivability, is presented. This work compares the effect of changing the material model from metallic to composite on the impact damage and floor acceleration characteristics. First, the metallic two- and six-frame sections of an A320 are analysed, with drop test data to compare for reference and validation. The six-frame metallic and composite sections for a larger, A350-like aircraft are examined to compare the relative safety of newer composite fuselages. The composite model includes both a quasi-isotropic analysis with damage based on maximum allowable strain, and a ply-by-ply laminate model with Hashin damage. Energy dissipation and acceleration analyses follow, which show the potentially dangerous acceleration pulses for passengers seated in the cabin.
机译:提出了AircraftFire工作的一部分,该项目是研究火灾和坠毁对飞机生存能力的影响的项目。这项工作比较了将材料模型从金属更改为复合材料对冲击损伤和地板加速度特性的影响。首先,分析A320的金属两框和六框部分,并通过跌落测试数据进行比较,以供参考和验证。研究了大型A350型飞机的六框架金属和复合材料部分,以比较新型复合材料机身的相对安全性。复合模型包括基于最大允许应变的准各向同性分析和具有Hashin损伤的逐层层压模型。随后进行了能量耗散和加速度分析,这些分析显示了坐在机舱内的乘客潜在的危险脉冲。

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