Biomimetic design of a soft robotic fish for high speed locomotion

Conference Paper (2021)
Author(s)

Sander C. Van Den Berg (Student TU Delft)

Rob B.N. Scharff (TU Delft - Industrial Design Engineering)

Zoltán Rusák (TU Delft - Industrial Design Engineering)

Jun Wu (TU Delft - Industrial Design Engineering)

Research Group
Materials and Manufacturing
DOI related publication
https://doi.org/10.1007/978-3-030-64313-3_35 Final published version
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Publication Year
2021
Language
English
Research Group
Materials and Manufacturing
Bibliographical Note
Accepted Author Manuscript
Pages (from-to)
366-377
Publisher
Springer
ISBN (print)
9783030643126
Event
9th International Conference on Biomimetic and Biohybrid Systems, Living Machines 2020 (2019-07-28 - 2019-07-30), Virtual, Online
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Abstract

We present a novel DC motor driven soft robotic fish which is optimized for speed and efficiency based on experimental, numerical and theoretical investigation into oscillating propulsion. Our system achieves speeds up to 0.85 m/s, outperforming the previously reported fastest free swimming soft robotic fish by a significant margin of 27%. A simple and effective wire-driven active body and passive compliant body are used to mimic highly efficient thunniform swimming. The efficient DC motor to drive the system decreases internal losses compared to other soft robotic oscillating propulsion systems which are driven by one or multiple servo motors. The DC motor driven design allows for swimming at higher frequencies. The current design has been tested up to a tailbeat frequency of 5.5 Hz, and can potentially reach much higher frequencies.

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