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Research Article | Open Access

Integrated Design Fabrication and Control of a Bioinspired Multimaterial Soft Robotic Hand

Samuel AlvesMihail BabcinschiAfonso SilvaDiogo NetoDiogo FonsecaPedro Neto( )
University of Coimbra, CEMMPRE, ARISE, Department of Mechanical Engineering, 3030-788 Coimbra, Portugal
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Abstract

Machines that mimic humans have inspired scientists for centuries. Bioinspired soft robotic hands are a good example of such an endeavor, featuring intrinsic material compliance and continuous motion to deal with uncertainty and adapt to unstructured environments. Recent research led to impactful achievements in functional designs, modeling, fabrication, and control of soft robots. Nevertheless, the full realization of life-like movements is still challenging to achieve, often based on trial-and-error considerations from design to fabrication, consuming time and resources. In this study, a soft robotic hand is proposed, composed of soft actuator cores and an exoskeleton, featuring a multimaterial design aided by finite element analysis (FEA) to define the hand geometry and promote finger’s bendability. The actuators are fabricated using molding, and the exoskeleton is 3D-printed in a single step. An ON–OFF controller keeps the set fingers’ inner pressures related to specific bending angles, even in the presence of leaks. The FEA numerical results were validated by experimental tests, as well as the ability of the hand to grasp objects with different shapes, weights, and sizes. This integrated solution will make soft robotic hands more available to people, at a reduced cost, avoiding the time-consuming design-fabrication trial-and-error processes.

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Cyborg and Bionic Systems
Article number: 0051

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Cite this article:
Alves S, Babcinschi M, Silva A, et al. Integrated Design Fabrication and Control of a Bioinspired Multimaterial Soft Robotic Hand. Cyborg and Bionic Systems, 2023, 4: 0051. https://doi.org/10.34133/cbsystems.0051

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Received: 13 June 2023
Accepted: 27 July 2023
Published: 08 August 2023
© 2023 Samuel Alvesz et al. Exclusive licensee Beijing Institute of Technology Press. No claim to original U.S. Government Works.

Distributed under a Creative Commons Attribution License 4.0 (CC BY 4.0).