Self-Deployable, Adaptive Soft Robots Based on Contracting-Cord Particle Jamming

Fuente: arXiv
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Autori principali: Yan, Wenzhong, Ye, Brian, Li, Mingxi, Hopkins, Jonathan B., Mehta, Ankur
Natura: Preprint
Pubblicazione: 2024
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author Yan, Wenzhong
Ye, Brian
Li, Mingxi
Hopkins, Jonathan B.
Mehta, Ankur
author_facet Yan, Wenzhong
Ye, Brian
Li, Mingxi
Hopkins, Jonathan B.
Mehta, Ankur
contents We developed a new class of soft locomotive robots that can self-assemble into a preprogrammed configuration and vary their stiffness afterward in a highly integrated, compact body using contracting-cord particle jamming (CCPJ). We demonstrate this with a tripod-shaped robot, TripodBot, consisting of three CCPJ-based legs attached to a central body. TripodBot is intrinsically soft and can be stored and transported in a compact configuration. On site, it can self-deploy and crawl in a slip-stick manner through the shape morphing of its legs; a simplified analytical model accurately captures the speed. The robot's adaptability is demonstrated by its ability to navigate tunnels as narrow as 61 percent of its deployed body width and ceilings as low as 31 percent of its freestanding height. Additionally, it can climb slopes up to 15 degrees, carry a load of 5 grams (2.4 times its weight), and bear a load 9429 times its weight.
format Preprint
id arxiv_https___arxiv_org_abs_2410_02974
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Self-Deployable, Adaptive Soft Robots Based on Contracting-Cord Particle Jamming
Yan, Wenzhong
Ye, Brian
Li, Mingxi
Hopkins, Jonathan B.
Mehta, Ankur
Robotics
We developed a new class of soft locomotive robots that can self-assemble into a preprogrammed configuration and vary their stiffness afterward in a highly integrated, compact body using contracting-cord particle jamming (CCPJ). We demonstrate this with a tripod-shaped robot, TripodBot, consisting of three CCPJ-based legs attached to a central body. TripodBot is intrinsically soft and can be stored and transported in a compact configuration. On site, it can self-deploy and crawl in a slip-stick manner through the shape morphing of its legs; a simplified analytical model accurately captures the speed. The robot's adaptability is demonstrated by its ability to navigate tunnels as narrow as 61 percent of its deployed body width and ceilings as low as 31 percent of its freestanding height. Additionally, it can climb slopes up to 15 degrees, carry a load of 5 grams (2.4 times its weight), and bear a load 9429 times its weight.
title Self-Deployable, Adaptive Soft Robots Based on Contracting-Cord Particle Jamming
topic Robotics
url https://arxiv.org/abs/2410.02974