吉林大学学报(信息科学版)

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高超声速飞行器机翼关键部件损伤特性研究

应竣棫, 王玉惠, 吴庆宪, 邵 鹏   

  1. 南京航空航天大学 自动化学院, 南京 210006
  • 收稿日期:2016-11-18 出版日期:2017-05-25 发布日期:2017-06-07
  • 通讯作者: 王玉惠(1980— ), 女, 内蒙古阿拉善盟人, 南京航空航天大学副教 授, 硕士生导师, 主要从事非线性控制和鲁棒控制研究, (Tel)86-13851564823(E-mail)wangyh@ nuaa. edu. cn。
  • 作者简介:应竣棫(1993— ), 男, 浙江金华人, 南京航空航天大学硕士研究生, 主要从事高超声速飞行器飞行控制研究, (Tel)86- 1589591788(E-mail)649371436@ qq. com。
  • 基金资助:
    中央高校基本科研业务费专项资金资助项目(NS2015031)

Research on Damage Characteristics of Key Components of Hypersonic Aircraft Wing

YING Junyu, WANG Yuhui, WU Qingxian, SHAO Peng   

  1. College of Automation Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 210006, China
  • Received:2016-11-18 Online:2017-05-25 Published:2017-06-07

摘要: 为有效预防机翼关键部件损伤对飞行安全的影响, 分析了高超声速飞行器机翼关键部件的损伤演化及飞
行器飞行动态对损伤的影响。 通过建立高超声速飞行器机翼材料的损伤动力学模型以及对机翼翼梁根部载荷
应力分析, 依次分析了飞行器飞行高度、 速度、 迎角以及副翼偏转角等变量对机翼关键部件损伤特性的影响,
以确定影响损伤的关键变量。 分析仿真结果表明, 相对于其他变量, 飞行器迎角对机翼关键部件损伤的影响最
大。 从保证飞行器安全和延长寿命的角度分析, 应尽量限制飞行器的迎角。 从而为减损控制系统设计奠定基
础, 并为提高飞行器结构的可靠性和延长飞行器寿命提供参考。

关键词: 损伤特性, 关键变量, 高超声速飞行器, 机翼

Abstract:  To prevent the influence of flight safety caused by damage of key components of hypersonic aircraft wing
effectively, the damage evolution of key components of hypersonic aircraft wing and the effects of the flight
dynamics to the damage are studied. By establishing the damage model of the aircraft wing based on the material
parameters and computing the loading stress of the wing’s root, the effects of flight height, velocity, angle of attack
and aileron deflection angle to the damage characteristic are analyzed to determine the crucial variable which affects
the damage. Simulation results show that the angle of attack plays a major role in the damage evolution compared
with other variables. Therefore, in hypersonic flight, the angle of attack should be limited as far as possible to
guarantee the safety of the vehicle and extend its life span. The achieved results lays a solid foundation for the
damage-mitigating controller design, which also provides an important reference to enhance the structural reliability
and extend the life span for hypersonic aircraft.

Key words: hypersonic aircraft, aircraft wing, damage characteristics, crucial variable

中图分类号: 

  • TP29