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Energy harvesting from a dynamic vibro-impact dielectric elastomer generator subjected to rotational excitations

Energy harvesting from a dynamic vibro-impact dielectric elastomer generator subjected to rotational excitations
Energy harvesting from a dynamic vibro-impact dielectric elastomer generator subjected to rotational excitations
A vibro-impact (VI) dielectric elastomer generator (DEG) subjected to rotational excitations is studied in this paper for energy harvesting (EH). The VI DEG that has been demonstrated as an advanced vibrational energy harvester is first introduced, and an impact model is proposed to experimentally validate the energy harvesting mechanism of the impact-based DEGs. The VI DEG is then considered to harvest energy from a rotational excitation by being installed onto rotational machinery. The dynamical and electrical responses of the proposed system are fully studied through both theoretical analysis and numerical simulations. It is found that the system presents rich dynamical behaviors under the rotational excitation, and the rotational speed and the distance between two membranes are two key parameters to affect the system’s response and EH performance. Research results show the superiority of the proposed system which can produce a maximal output power as high as 0.88 mW from rotational excitations, and also provide guidelines to study the rotational speed-related system EH performance with given dimensional parameters or optimize the dimensional parameters under a given rotational speed.
Dielectric elastomer generator, Energy harvesting, Rotational excitations, Vibro-impact
0924-090X
1271-1284
Zhang, C. L.
b31ce4c0-283b-426c-ba3f-dd3b1da32a5d
Lai, Z. H.
4a73c981-6ebf-4783-9896-8917fe5b9cb2
Zhang, G. Q.
77e5a25d-0152-4490-856b-090fa11f2d4d
Yurchenko, D.
51a2896b-281e-4977-bb72-5f96e891fbf8
Zhang, C. L.
b31ce4c0-283b-426c-ba3f-dd3b1da32a5d
Lai, Z. H.
4a73c981-6ebf-4783-9896-8917fe5b9cb2
Zhang, G. Q.
77e5a25d-0152-4490-856b-090fa11f2d4d
Yurchenko, D.
51a2896b-281e-4977-bb72-5f96e891fbf8

Zhang, C. L., Lai, Z. H., Zhang, G. Q. and Yurchenko, D. (2020) Energy harvesting from a dynamic vibro-impact dielectric elastomer generator subjected to rotational excitations. Nonlinear Dynamics, 102 (3), 1271-1284. (doi:10.1007/s11071-020-05988-7).

Record type: Article

Abstract

A vibro-impact (VI) dielectric elastomer generator (DEG) subjected to rotational excitations is studied in this paper for energy harvesting (EH). The VI DEG that has been demonstrated as an advanced vibrational energy harvester is first introduced, and an impact model is proposed to experimentally validate the energy harvesting mechanism of the impact-based DEGs. The VI DEG is then considered to harvest energy from a rotational excitation by being installed onto rotational machinery. The dynamical and electrical responses of the proposed system are fully studied through both theoretical analysis and numerical simulations. It is found that the system presents rich dynamical behaviors under the rotational excitation, and the rotational speed and the distance between two membranes are two key parameters to affect the system’s response and EH performance. Research results show the superiority of the proposed system which can produce a maximal output power as high as 0.88 mW from rotational excitations, and also provide guidelines to study the rotational speed-related system EH performance with given dimensional parameters or optimize the dimensional parameters under a given rotational speed.

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More information

Accepted/In Press date: 28 September 2020
e-pub ahead of print date: 12 October 2020
Published date: 1 November 2020
Keywords: Dielectric elastomer generator, Energy harvesting, Rotational excitations, Vibro-impact

Identifiers

Local EPrints ID: 469669
URI: http://eprints.soton.ac.uk/id/eprint/469669
ISSN: 0924-090X
PURE UUID: 55da5855-0168-42cf-ab3e-1f68207170ac
ORCID for D. Yurchenko: ORCID iD orcid.org/0000-0002-4989-3634

Catalogue record

Date deposited: 21 Sep 2022 17:05
Last modified: 17 Mar 2024 04:11

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Contributors

Author: C. L. Zhang
Author: Z. H. Lai
Author: G. Q. Zhang
Author: D. Yurchenko ORCID iD

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