Propulsion of swimming microrobots inspired by metachronal waves in ciliates: from biology to material specifications

被引:33
作者
Palagi, Stefano [1 ]
Jager, Edwin W. H. [2 ]
Mazzolai, Barbara [1 ]
Beccai, Lucia [1 ]
机构
[1] Ist Italiano Tecnol, Ctr MicrobioRobot SSSA, I-56025 Pontedera, Italy
[2] Linkoping Univ, Dept Phys Chem & Biol IFM, Biosensors & Bioelect Ctr, SE-58183 Linkoping, Sweden
关键词
ARTIFICIAL MUSCLES; ACTUATORS; POLYPYRROLE; SPEED; ELASTOMERS; TRANSPORT; SWIMMERS; NUMBER; STRAIN; FLOW;
D O I
10.1088/1748-3182/8/4/046004
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The quest for swimming microrobots originates from possible applications in medicine, especially involving navigation in bodily fluids. Swimming microorganisms have become a source of inspiration because their propulsion mechanisms are effective in the low-Reynolds number regime. In this study, we address a propulsion mechanism inspired by metachronal waves, i.e. the spontaneous coordination of cilia leading to the fast swimming of ciliates. We analyse the biological mechanism (referring to its particular embodiment in Paramecium caudatum), and we investigate the contribution of its main features to the swimming performance, through a three-dimensional finite-elements model, in order to develop a simplified, yet effective artificial design. We propose a bioinspired propulsion mechanism for a swimming microrobot based on a continuous cylindrical electroactive surface exhibiting perpendicular wave deformations travelling longitudinally along its main axis. The simplified propulsion mechanism is conceived specifically for microrobots that embed a micro-actuation system capable of executing the bioinspired propulsion (self-propelled microrobots). Among the available electroactive polymers, we select polypyrrole as the possible actuation material and we assess it for this particular embodiment. The results are used to appoint target performance specifications for the development of improved or new electroactive materials to attain metachronal-waves-like propulsion.
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页数:11
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  • [1] Modeling of a propulsion mechanism for swimming microrobots inspired by ciliate metachronal waves
    Palagi, Stefano
    Mazzolai, Barbara
    Beccai, Lucia
    2012 4TH IEEE RAS & EMBS INTERNATIONAL CONFERENCE ON BIOMEDICAL ROBOTICS AND BIOMECHATRONICS (BIOROB), 2012, : 264 - 269