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AEROELASTIC ANALYSIS OF A THIN-WALLED COMPOSITE AIRCRAFT WING WITH AN EXTERNAL STORE SUBJECTED TO A FOLLOWER FORCE

机译:薄壁复合飞机机翼的空气弹性分析,外部商店经受从动力的力

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This study reports dynamic aeroelastic analyses of an aircraft wing with an attached mass subjected a lateral follower force in an incompressible flow. A swept thin-walled composite beam with a biconvex cross-section is used as the structural model that incorporates a number of non-classical effects such as material anisotropy, transverse shear deformation and warping restraint. A symmetric lay-up configuration i.e. circumferentially asymmetric stiffness (CAS) is further adapted to this model to generate the coupled motion of flapwise bending-torsion-transverse shear. For this beam model, the unsteady aerodynamic loads are expressed using Wagners function in the time-domain as well as using Theodorsen function in the frequency-domain. The flutter speeds are evaluated for several ply angles and the effects of follower force, transverse shear, fiber-orientation and sweep angle on the aeroelastic instabilities are further discussed.
机译:本研究报告了在不可压缩的流动中具有附着的肿块的飞机机翼的动态空气弹性分析。具有Biconvex横截面的扫薄的薄壁复合梁用作包含许多非古典效果的结构模型,例如材料各向异性,横向剪切变形和翘曲约束。对称的铺设配置即,周向不对称刚度(CAS)进一步适用于该模型,以产生络合弯曲扭转横向剪切的耦合运动。对于该光束模型,在时域中使用摇头函数以及在频域中使用的odorsen函数表示不稳定的空气动力学负载。进一步讨论了对几个帘布层角度和从动力,横向剪切,纤维取向和扫描角度的颤动速度进行评估。

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