The design and aerodynamic analysis of intelligent variable camber airfoils with MFC

被引:0
作者
Xiangying Guo
Kun Luo
Yegao Qu
Dongxing Cao
机构
[1] Beijing University of Technology,Faculty of Materials and Manufacturing
[2] Beijing Key Laboratory of Nonlinear Vibrations and Strength of Mechanical Structures,School of Mechanical Engineering
[3] California University,School of Mechanical Engineering
[4] Shanghai Jiaotong University,undefined
[5] State Key Laboratory of Mechanical System and Vibration,undefined
来源
International Journal of Dynamics and Control | 2022年 / 10卷
关键词
MFC smart airfoil; Aerodynamic analysis; Dynamical characteristics; High-low excitations;
D O I
暂无
中图分类号
学科分类号
摘要
The intelligent morphing airfoil can adaptively change the shape of the airfoil according to different flight conditions to improve aerodynamic efficiency and aircraft performance. Thus, an intelligent airfoil structure is designed to achieve continuous and smooth deformation of the trailing edge of the airfoil, where a macro fiber composite is considered as an actuator, and a carbon fiber reinforced composite material is chosen as a load-bearing part. An experimental model is made based on the three-dimensional designed model, and the trailing edge deformability of the airfoil under direct current drive is analyzed through the static experiments. Then, a shear stress transfer turbulence model is used to analyze the aerodynamic characteristics of the designed airfoil by the computational fluid dynamics module in COMSOL Multiphysics. The effects of the trailing edge deflection angle, the attack angle of the airfoil, and the incoming velocity on the aerodynamic characteristics of the morphing airfoil are also studied. Finally, the dynamical characteristics of the variable camber airfoil are discussed experimentally, including the natural frequencies and the effect of the high-low coupling excitations on the vibration of the airfoil.
引用
收藏
页码:1034 / 1045
页数:11
相关论文
共 62 条
[1]  
Bilgen O(2009)Macro-fiber composite actuators for a swept wing unmanned aircraft Aeronaut J 113 385-395
[2]  
Kochersberger KB(2010)Novel, bidirectional, variable-camber airfoil via macro-fiber composite actuators J Aircr 47 303-314
[3]  
Inman DJ(2011)Design and verification of a smart wing for an extreme-agility micro-air-vehicle Smart Mater Struct 20 125007-1068
[4]  
Bilgen O(2007)Morphing wing flight control via post-buckled pre-compressed piezoelectric actuators J Aircr 44 1060-1499
[5]  
Kochersberger KB(2014)Design, characterization, and testing of macro-fiber composite actuators for integration on a fixed-wing UAV Proc SPIE Int Soc Opt Eng 9057 905715-817
[6]  
Inman DJ(2007)Macro-fiber composite piezoelectric rosettes for acoustic source location in complex structures Smart Mater Struct 16 1489-500
[7]  
Inman DJ(2013)Active vibration control based on piezoelectric smart composite Smart Mater Struct 22 125032-12871
[8]  
Wickramasinghe V(2009)Active shape control of composite structures under thermal loading Smart Mater Struct 18 025007-12
[9]  
Chen Y(2008)A distributed parameter electromechanical model for cantilevered piezoelectric energy harvesters J Vib Acoust 130 041002-1029
[10]  
Martinez M(2010)Macro-fiber composite actuated simply supported thin airfoils Smart Mater Struct 19 055010-334