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  5. Muscle-fiber array inspired, multiple-mode, pneumatic artificial muscles through planar design and one-step rolling fabrication

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Article
English
2021

Muscle-fiber array inspired, multiple-mode, pneumatic artificial muscles through planar design and one-step rolling fabrication

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English
2021
National Science Review
Vol 8 (10)
DOI: 10.1093/nsr/nwab048

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Guoying Gu
Guoying Gu

Shanghai Jiao Tong University

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Jiang Zou
Miao Feng
Ningyuan Ding
+6 more

Abstract

Advances in development of artificial muscles have enabled creation of soft robots with biological dexterity and self-adaption in unstructured environments; however, production of scalable artificial muscles with multiple-mode actuations remains elusive. Inspired by muscle-fiber arrays in muscular hydrostats, we present a class of versatile artificial muscles called MAIPAMs (muscle-fiber array inspired pneumatic artificial muscles), capable of multiple-mode actuations (such as parallel elongation-bending-spiraling actuations, 10 parallel bending actuations and cascaded elongation-bending-spiraling actuations). Our MAIPAMs consist of active 3D elastomer-balloon arrays reinforced by a passive elastomer membrane, achieved through a planar design and one-step rolling fabrication approach. We introduce prototypical designs for the MAIPAMs and demonstrate their muscle-mimic structures and versatility, as well as their scalable ability to integrate flexible but non-stretchable layers for contraction and twisting actuation modes and compliant electrodes for self-sensing. We further demonstrate that this class of artificial muscles shows potential for versatile robotic applications, such as carrying a camera for recording videos, gripping or manipulating objects, and climbing a pipe-line.

How to cite this publication

Jiang Zou, Miao Feng, Ningyuan Ding, Peinan Yan, Haipeng Xu, Dezhi Yang, Nicholas X. Fang, Guoying Gu, Xiangyang Zhu (2021). Muscle-fiber array inspired, multiple-mode, pneumatic artificial muscles through planar design and one-step rolling fabrication. National Science Review, 8(10), DOI: 10.1093/nsr/nwab048.

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Publication Details

Type

Article

Year

2021

Authors

9

Datasets

0

Total Files

0

Language

English

Journal

National Science Review

DOI

10.1093/nsr/nwab048

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