Composite wing flutter analysis with variations of ribs location

Nurul Zubaidah Zaki, A. Abdul-Latif, S. Mansor
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Abstract

Elastic structures constructed using composite materials may be easily deformed due to low stiffness, leading to flutter phenomenon to occur during flight. In this paper, the occurrence of flutter on a composite UAV wing is investigated by considering the effect of the location and position of ribs on flutter speed. Flutter analyses are conducted using the full aeroelastic equation of motion derived from the Lagrange's equation and Theodorsen's airfoil theory. UTM CAMAR UAV composite wings are selected as case studies in which the ribs are positioned across the wing span to obtain the optimized rib position. The natural frequencies for bending and torsion at each of the rib positions is obtained using the finite element analysis, conducted using the ABAQUS software. From the study, a pair of ribs located at 33% and 67% of wing span was found to give the maximum flutter speed at 264.62 m/s.
考虑肋位置变化的复合材料机翼颤振分析
使用复合材料构建的弹性结构由于刚度低,容易发生变形,导致在飞行过程中出现颤振现象。考虑翼筋位置和位置对颤振速度的影响,研究了复合材料无人机机翼颤振的发生。利用拉格朗日方程和西奥多森翼型理论导出的全气动弹性运动方程进行了颤振分析。以UTM CAMAR无人机复合材料机翼为研究对象,对翼肋进行跨翼展定位,得到优化的翼肋位置。利用ABAQUS软件进行有限元分析,得到各肋位置弯曲和扭转的固有频率。从研究中发现,一对肋位于33%和67%的翼展,最大颤振速度为264.62 m/s。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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