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The concept of a quiet undulating propulsion with ionic polymer-metal composites in autonomous underwater vehicles

机译:自主水下汽车离子聚合物 - 金属复合材料安静起伏推进的概念

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Purpose: Recent years have shown a dynamic development of underwater robotics. Autonomous biomimetic underwater vehicles (BUVs) with undulating propulsion are the latest branch in this area. They imitate not only the construction of underwater living organisms such as fish, but also kinematics of their motion. Such solution gives more energy efficient propulsion with less noise comparing to classical propulsion based on screw propellers [1]. However even the latest solutions still use the same electromagnetic engines to drive those sophisticated constructions. This article contains the concept of a ionic polymer-metal composites drive, design for undulating propulsion.Design/methodology/approach: Design of the new type of fin requires further tests and presented model takes under the consideration influence of only few factors described in this paper.Findings: Results of the research confirm theoretical behaviour of IPMC's (Ionic Polymer-Metal Composites) and show some disadvantages of this type of materials.Research limitations/implications: The effects of the research are limited to macroscopic observation with limited accuracy.Practical implications: Results of the research show possible future application of IPMC's (in underwater robotics).Originality/value: Results of this research opens a new idea which with further tests may result in developing a new quiet undulating propulsion for BUVs.
机译:目的:近年来表现出水下机器人的动态发展。具有起伏推进的自主仿生水下车辆(BUV)是该地区的最新分支。它们不仅模仿了鱼类等水下生物的构建,而且还模仿了他们的动议的运动学。这种溶液提供了与基于螺杆螺旋桨的经典推进的噪声比较较少的噪声,提供更节能的推进。然而,即使最新的解决方案仍然使用相同的电磁发动机来驱动那些复杂的结构。本文含有离子聚合物 - 金属复合材料驱动器的概念,起伏推动设计。设计/地中海学零:新型翅片的设计需要进一步的测试,并提出模型在这方面只有几个因素的影响Paper.findings:研究结果证实了IPMC(离子聚合物 - 金属复合材料)的理论行为,并显示了这种材料的一些缺点。研究限制/影响:研究的影响仅限于有限的准确性观察。宏观观察含义:研究结果表明,IPMC的未来可能的应用(在水下机器人)中可能会应用于。

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