复合蒙皮对飞机机身吸能特性的影响

Sharifah Nadhirah S. A. R., J. Ali, Shaik Dawood M. S. I., Adib Hamdani R.
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引用次数: 0

摘要

在航空史上,与飞行的其他阶段相比,着陆期间的事故更为频繁,在大多数情况下,飞机在起落架故障时被迫紧急腹降。本研究旨在分析一种典型复合材料飞机的机身截面在这种迫降下的能量吸收。利用LS-Dyna有限元软件建立了该复合材料机身截面的有限元模型并进行了分析,研究了不同复合材料对机身截面吸能的影响。本研究选择了航空航天应用中常用的四种不同的复合材料,即玻璃/环氧树脂、石墨/环氧树脂、凯夫拉尔/环氧树脂和硼/环氧树脂。考虑对刚性地面的冲击速度为7 m/s。结果表明:框架和表皮对能量吸收的贡献最大,而乘客层和支撑对能量吸收的贡献最小。此外,玻璃/环氧树脂制成的机身蒙皮比其他材料吸收能量更多,比能量吸收最高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Composite Skin on the Energy Absorption Characteristics of an Aircraft Fuselage
In aviation history, accidents during landing are more frequent compared to other phases of flight and in most cases the aircraft is forced to make an emergency belly landing when landing gear malfunctions. This study aims to analyse the energy absorption of a typical composite aircraft fuselage section under such crash belly landing. A finite element model of this composite fuselage section was created and analyzed using LS-Dyna finite element software and the effects of different composite materials on the energy absorption of fuselage section were studied.  Four different composite materials that are commonly used in aerospace application were selected for the purpose of the present study namely glass/epoxy, graphite/epoxy, Kevlar/epoxy, and boron/epoxy. An impact velocity of 7 m/s against rigid ground was considered.  Results showed that frames and skin contribute the most in energy absorption while the passenger floor and strut contribute the least. Moreover, it was found that fuselage skin made of glass/epoxy absorbed more energy compared to other materials and it had the highest specific energy absorption.
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