4.7 Article

Direct and remote induced actuation in artificial muscles based on electrospun fiber networks

Journal

SCIENTIFIC REPORTS
Volume 12, Issue 1, Pages -

Publisher

NATURE PORTFOLIO
DOI: 10.1038/s41598-022-16872-2

Keywords

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Funding

  1. Ministry of Research, Romania Core Program [PN19-03, 21 N/08.02.2019, 47PCCDI/2018]
  2. Unitatea Executiva pentru Finantarea Invatamantului Superior, a Cercetarii, Dezvoltarii si Inovarii of project [PN-III-P1-1.1-PD-2019-1066]
  3. Romanian Ministry of Research, Innovation and Digitization [35PFE/2022]

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This work presents a new configuration of soft artificial muscle using a metal covered nylon 6/6 microfiber web attached to a thin polydimethylsiloxane film. The composite material can be shaped into various forms and displays fast and ample movement when an electric current is applied. It offers a versatile approach for untethered devices in applications where autonomous actuation and remote energy transfer are required.
The present work reports a new configuration of soft artificial muscle based on a web of metal covered nylon 6/6 micrometric fibers attached to a thin polydimethylsiloxane (PDMS) film. The preparation process is simple and implies the attachment of metalized fiber networks to a PDMS sheet substrate while heating and applying compression. The resulting composite is versatile and can be cut in different shapes as a function of the application sought. When an electric current passes through the metallic web, heat is produced, leading to local dilatation and to subsequent controlled deformation. Because of this, the artificial muscle displays a fast and ample movement (maximum displacement of 0.8 cm) when applying a relatively low voltage (2.2 V), a consequence of the contrast between the thermal expanse coefficients of the PDMS substrate and of the web-like electrode. It was shown that the electrical current producing this effect can originate from both direct electric contacts, and untethered configurations i.e. radio frequency induced. Usually, for thermal activated actuators the heating is produced by using metallic films or conductive carbon-based materials, while here a fast heating/cooling process is obtained by using microfiber-based heaters. This new approach for untethered devices is an interesting path to follow, opening a wide range of applications were autonomous actuation and remote transfer of energy are needed.

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