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Preliminary design of aeroelastically tailored wing box structures with bend-twist coupling

机译:弯曲扭转耦合空气量身定制翼盒结构的初步设计

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Nowadays the composite materials have become the materials of choice to be used in the new aerospace structures that need to be not only larger and larger in size but also to be better performing in terms of aeroelastic responses inherent to thin-walled, slender structures. The advantage of composite materials airframes stems from their low structural weight which determines lower fuel consumption while preserving at the same time the airworthiness of the designed aircraft. But more important than the fuel consumption, the composite materials allow for the optimal tailoring of its layers in terms of specific design objectives. The paper presents such an aeroelastically tailored load carrying wing model which can passively control specific aeroelastic effects. The article focuses on the bend-twist coupling of the structural response to aerodynamic forces and on the parameter estimation/model updating techniques used to characterize the finite element model of the composite wing. Results are compared and validated with analytical, numerical and experimental data available in published literature.
机译:如今,复合材料已成为在新的航空航天结构中使用的选择材料,这不仅要较大,尺寸较大,而且在薄壁覆盖的纤细结构固有的空气弹性响应方面也更好地表演。复合材料空气框架的优点来自它们的低结构重量,这在相同时间在设计飞机的适航性时确定较低的燃料消耗。但比燃料消耗更重要,复合材料在特定的设计目标方面允许其层的最佳剪裁。本文提出了这种空气弹性定制的载荷翼型,可被动控制特异性气动弹性效果。该物品专注于对空气动力力的结构响应的弯曲扭转耦合,以及用于表征复合机翼的有限元模型的参数估计/模型更新技术。比较和验证了发表文献中可用的分析,数值和实验数据验证。

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