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September 21, 2017Science Robotics311 citations

A biorobotic adhesive disc for underwater hitchhiking inspired by the remora suckerfish

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YWYueping WangXYXingbang YangYCYufeng Chen

Key Points

  • To design and evaluate a remora-inspired biorobotic adhesive disc capable of robust underwater hitchhiking across diverse substrate textures.
  • Fabricated rigid spinules using laser machining and integrated them with soft actuator-controlled lamellae to mimic remora disc kinematics.
  • Tested prototype pull-off and frictional forces across various surfaces, including smooth, rough, compliant materials, and shark skin.
  • The biomimetic adhesive disc generated vertical pull-off forces up to 340 times the weight of the disc prototype.
  • Actuator-driven rotation of rigid spinules and soft lamellae significantly elevated frictional engagement across surfaces of varying roughness, enabling robotic underwater hitchhiking.

Abstract

m base diameter) using laser machining techniques and attached them to soft actuator-controlled lamellae. Our biomimetic prototype can attach to different surfaces and generate considerable pull-off force-up to 340 times the weight of the disc prototype. The rigid spinules and soft material overlaying the lamellae engage with the surface when rotated, just like the discs of live remoras. The biomimetic kinematics result in significantly enhanced frictional forces across the disc on substrates of different roughness. Using our prototype, we have designed an underwater robot capable of strong adhesion and hitchhiking on a variety of surfaces (including smooth, rough, and compliant surfaces, as well as shark skin). Our results demonstrate that there is promise for the development of high-performance bioinspired robotic systems that may be used in a number of applications based on an understanding of the adhesive mechanisms used by remoras.

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Cite This Study

Wang et al. (2017) studied this question.

synapsesocial.com/papers/6a153a6dcb801b7f954e3d27https://doi.org/10.1126/scirobotics.aan8072
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