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首页> 外文期刊>Journal of intelligent material systems and structures >Morphing aircraft based on smart materials and structures: A state-of-the-art review
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Morphing aircraft based on smart materials and structures: A state-of-the-art review

机译:基于智能材料和结构的变形飞机:最新技术回顾

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摘要

A traditional aircraft is optimized for only one or two flight conditions, not for the entire flight envelope. In contrast, the wings of a bird can be reshaped to provide optimal performance at all flight conditions. Any change in an aircraft's configuration, in particular the wings, affects the aerodynamic performance, and optimal configurations can be obtained for each flight condition. Morphing technologies offer aerodynamic benefits for an aircraft over a wide range of flight conditions. The advantages of a morphing aircraft are based on an assumption that the additional weight of the morphing components is acceptable. Traditional mechanical and hydraulic systems are not considered good choices for morphing aircraft. Smart materials and structures have the advantages of high energy density, ease of control, variable stiffness, and the ability to tolerate large amounts of strain. These characteristics offer researchers and designers new possibilities for designing morphing aircraft. In this article, recent developments in the application of smart materials and structures to morphing aircraft are reviewed. Specifically, four categories of applications are discussed: actuators, sensors, controllers, and structures.
机译:传统飞机仅针对一个或两个飞行条件进行了优化,而不针对整个飞行范围进行了优化。相反,可以对鸟的翅膀进行整形,以在所有飞行条件下提供最佳性能。飞机配置(尤其是机翼)的任何变化都会影响空气动力性能,并且可以针对每种飞行条件获得最佳配置。变形技术在广泛的飞行条件下为飞机提供了空气动力学上的好处。变形飞机的优势是基于这样的假设,即变形组件的额外重量是可以接受的。传统的机械和液压系统不被认为是飞机变形的好选择。智能材料和结构的优点是能量密度高,易于控制,可变刚度以及能够承受大量应变。这些特性为研究人员和设计师提供了设计变形飞机的新可能性。在本文中,回顾了将智能材料和结构应用于飞机变形的最新进展。具体来说,讨论了四类应用:执行器,传感器,控制器和结构。

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