Dynamic Behavior of Aircraft Wings Modeled as Doubly-Tapered Composite Thin-Walled Beams

S. Na, L. Librescu
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引用次数: 5

Abstract

A study of the dynamical behavior of aircraft wings modeled as doubly-tapered thin-walled beams, made from advanced anisotropic composite materials, and incorporating a number of non-classical effects such as transverse shear, and warping inhibition is presented. The supplied numerical results illustrate the effects played by the taper ratio, anisotropy of constituent materials, transverse shear flexibility, and warping inhibition on free vibration and dynamic response to time-dependent external excitations. Although considered for aircraft wings, this analysis and results can be also applied to a large number of structures such as helicopter blades, robotic manipulator arms, space booms, tall cantilever chimneys, etc.
双锥形复合薄壁梁飞机机翼动力特性研究
本文研究了采用先进的各向异性复合材料制造的双锥形薄壁梁飞机机翼的动力学行为,并考虑了横向剪切和翘曲抑制等非经典效应。所提供的数值结果说明了锥度比、组成材料的各向异性、横向剪切柔韧性和翘曲抑制对自由振动和随时间外部激励的动态响应的影响。虽然考虑的是飞机机翼,但这种分析和结果也可以应用于大量的结构,如直升机叶片、机器人操纵臂、空间臂架、高悬臂烟囱等。
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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