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复合材料无人机滑撬式起落架设计与优化

胡松 祖磊 李书欣 刘萌 谢丽婷

玻璃钢/复合材料Issue(3):26-32,7.
玻璃钢/复合材料Issue(3):26-32,7.

复合材料无人机滑撬式起落架设计与优化

DESIGN AND OPTIMIZATION OF COMPOSITE UAV LANDING GEAR SKIDS

胡松 1祖磊 1李书欣 1刘萌 1谢丽婷2

作者信息

  • 1. 武汉理工大学材料科学与工程学院,武汉 430070
  • 折叠

摘要

Abstract

This paper established finite element model of landing gear skids according to the approximate requirement of a certain Mini-UAV (unmanned aerial vehicle).The airframe was simplified as a mass point.Then,by conducting the dynamic simulation of UAV landing process,from which a series of simulation results such as the attenuated trend of UAV's velocity,the acceleration of UAV could be calculated.For the sake of lowering the acceleration of UAV whthin a safety range,the sectional dimension of arched beams and filament winding angles were required to optimizate to meet the demands.Then,by using Tsai-Wu failure criterion to check the strength of arched beams,an appropriate arched beams structure and optimal filament winding angles were designed and obtained,which minimize the value of acceleration of UAV without structure failure.Besides,we attempte to use different kinds of fiber composites to further improve the vibration resistance of landing gear skids.Simulation results indicate that reasonable sectional dimension of arched beams could improve vibration resistance of landing gear skids.The optimal filament winding angles were (45o/-45o/90o/-90o/45o/-45°) which lowered Tsai-Wu failure indice.Meanwhile,the landing gear skids made of aramid fiber composites possessed greater vibration resistance than that made of by carbon fiber composites.The research results had a vital directive meanling on the design and manufacture of UAV landing gear skids.

关键词

复合材料/滑撬式起落架/弓形梁/截面设计/过载

Key words

composite material/landing gear skids/arched beams/sectional dimension design/acceleration

引用本文复制引用

胡松,祖磊,李书欣,刘萌,谢丽婷..复合材料无人机滑撬式起落架设计与优化[J].玻璃钢/复合材料,2018,(3):26-32,7.

基金项目

国家自然科学基金(11302168) (11302168)

湖北省自然科学基金(2014CFB140) (2014CFB140)

中央高校基本科研业务费专项资金资助项目(143101001) (143101001)

玻璃钢/复合材料

OA北大核心

2096-8000

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