Design, Fabrication and Morphing Mechanism of Soft Fins and Arms of a Squid-like Aquatic-aerial Vehicle with Morphology Tradeoff

Taogang Hou, Xingbang Yang, Haohong Su, Lingkun Chen, Tianmiao Wang, Jianhong Liang, Siyang Zhang
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引用次数: 6

Abstract

Some animals have the ability to shuttle freely between water and air. These creatures have evolved special body structures to accommodate both underwater and airborne environments. Natural creatures have given us great inspiration to the variable structure design for aquatic-aerial multimodal vehicle. In this paper, we propose a new squid-like soft morphing fins according to the flying squid. This squid-like soft morphing fins can spread and fold for the adaptation of the aquatic-aerial multimodal locomotion. When the fin is spread, it can generate lift force for the aquatic-aerial vehicle. When the soft fin is folded, it can reduce the drag force during the underwater movement. An unique air cavity inside the fin was designed as actuator to bend the soft fin. The fabrication method of the soft fin was introduced. The bending performance of the soft fin was analyzed by FEA simulation and tested by several experiments. Then, morphology tradeoff strategy of aquatic-aerial vehicle with soft morphing fins was investigated by the wind and water tunnel. The results demonstrate the soft morphing fins have fast actuating response and good deformability, which verifies the soft fin can help the aquatic-aerial vehicle to realize multi-modal locomotion.
基于形态权衡的鱿鱼型水上飞行器软鳍、软臂设计、制造及变形机理研究
有些动物有在水和空气之间自由穿梭的能力。这些生物已经进化出特殊的身体结构来适应水下和空中环境。自然生物给了我们很大的灵感来进行水-空多式联运车的变结构设计。本文根据飞行乌贼的特点,提出了一种新型的鱿鱼状软变形鳍。这种鱿鱼状的柔软变形鳍可以展开和折叠,以适应水-空多模态运动。当翅片展开时,它可以为水上飞行器产生升力。当软鳍折叠时,它可以减少水下运动时的阻力。设计了独特的气腔作为软肋弯曲的致动器,介绍了软肋的制作方法。通过有限元模拟分析了软肋的弯曲性能,并进行了实验验证。在此基础上,采用风洞水洞法研究了柔性变形鳍水上飞行器的形态权衡策略。结果表明,柔性变形鳍具有快速的驱动响应和良好的变形能力,验证了柔性变形鳍能够帮助水上飞行器实现多模态运动。
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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