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Versatile vacuum-powered artificial muscles through replaceable external reinforcements.


ABSTRACT: Soft pneumatic artificial muscles are a well actuation scheme in soft robotics due to its key features for robotic machines being safe, lightweight, and conformable. In this work, we present a versatile vacuum-powered artificial muscle (VPAM) with manually tunable output motion. We developed an artificial muscle that consists of a stack of air chambers that can use replaceable external reinforcements. Different modes of operation are achieved by assembling different reinforcements that constrain the output motion of the actuator during actuation. We designed replaceable external reinforcements to produce single motions such as twisting, bending, shearing and rotary. We then conducted a deformation and lifting force characterization for these motions. We demonstrated sophisticated motions and reusability of the artificial muscle in two soft machines with different modes of locomotion. Our results show that our VPAM is reusable and versatile producing a variety and sophisticated output motions if needed. This key feature specially benefits unpredicted workspaces that require a soft actuator that can be adjusted for other tasks. Our scheme has the potential to offer new strategies for locomotion in machines for underwater or terrestrial operation, and wearable devices with different modes of operation.

SUBMITTER: Mendoza MJ 

PROVIDER: S-EPMC10794473 | biostudies-literature | 2023

REPOSITORIES: biostudies-literature

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Versatile vacuum-powered artificial muscles through replaceable external reinforcements.

Mendoza Mijaíl Jaén MJ   Cancán Sergio S   Surichaqui Steve S   Centeno Esteban E   Vilchez Ricardo R   Bertoldi Katia K   Vela Emir A EA  

Frontiers in robotics and AI 20240104


Soft pneumatic artificial muscles are a well actuation scheme in soft robotics due to its key features for robotic machines being safe, lightweight, and conformable. In this work, we present a versatile vacuum-powered artificial muscle (VPAM) with manually tunable output motion. We developed an artificial muscle that consists of a stack of air chambers that can use replaceable external reinforcements. Different modes of operation are achieved by assembling different reinforcements that constrain  ...[more]

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