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Design and demonstration of a small expandable morphing wing

机译:小型可变形翼的设计与演示

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In this paper, we present design, manufacturing, and wind tunnel test for a small-scale expandable morphing wing. The wing is separated into inner and outer wings as a typical bird wing. The part from leading edge of the wing chord is made of carbon composite strip and balsa. The remaining part is covered with curved thin carbon fiber composite mimicking wing feathers. The expandable wing is driven by a small DC motor, reduction gear, and fiber reinforced composite linkages. Rotation of the motor is switched to push-pull linear motion by a screw and the linear motion of the screw is transferred to linkages to create wing expansion and folding motions. The wing can change its aspect ratio from 4.7 to 8.5 in about 2 seconds and the speed can be controlled. Two LIPCAs (Lightweight Piezo-Composite Actuators) are attached under the inner wing section and activated on the expanded wing state to modify camber of the wing. In the wind tunnel test, change of lift, drag, and pitching moment during wing expansion have been investigated for various angles of attack. The LIPCA activation has created significant additional lift.
机译:在本文中,我们介绍了小型可扩展变形机翼的设计,制造和风洞测试。机翼分成典型的鸟翼,分为内翼和外翼。机翼弦的前缘部分由碳纤维复合材料条和轻木制成。其余部分覆盖有弯曲的细碳纤维复合材料,模仿机翼羽毛。可扩展的机翼由小型直流电动机,减速齿轮和纤维增强的复合连杆机构驱动。马达的旋转通过螺钉转换为推拉线性运动,并且螺钉的线性运动被传递到连杆以产生机翼膨胀和折叠运动。机翼可以在大约2秒钟内将其长宽比从4.7更改为8.5,并且可以控制速度。两个LIPCA(轻型压电复合执行器)连接在内翼部分下方,并在展开的机翼状态下启动,以修改机翼的外倾角。在风洞试验中,已经研究了机翼膨胀过程中升力,阻力和俯仰力矩在各种迎角下的变化。 LIPCA的激活带来了显着的额外提升。

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