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Dielectric elastomer generator with equi-biaxial mechanical loading for energy harvesting

  • Jiangshui Huang
  • , Samuel Shian
  • , Zhigang Suo
  • , David R. Clarke
  • Harvard University

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

23 Scopus citations

Abstract

Dielectric elastomer generators (DEGs) are attractive candidates for harvesting electrical energy from mechanical work since they comprise relatively few moving parts and large elastomer sheets can be mass produced. Successfully demonstrations of the DEG prototypes have been reported from a diverse of energy sources, including ocean waves, wind, flowing water and human movement. The energy densities achieved, however, are still small compared with theoretical predictions. We show that significant improvements in energy density (550 J/kg with an efficiency of 22.1%), can be achieved using an equi-biaxial mechanical loading configuration, one that produces uniform deformation and maximizes the capacitance changes. Analysis of the energy dissipations indicates that mechanical losses, which are caused by the viscous losses both within the acrylic elastomer and within the thread materials used for the load transfer assembly, limits the energy conversion efficiency of the DEG. Addressing these losses is suggested to increase the energy conversion efficiency of the DEG.

Original languageEnglish
Title of host publicationElectroactive Polymer Actuators and Devices (EAPAD) 2013
DOIs
StatePublished - 2013
Externally publishedYes
EventSPIE Electroactive Polymers Actuators and Devices Conference, EAPAD 2013 - San Diego, CA, United States
Duration: 11 Mar 201314 Mar 2013

Publication series

NameProceedings of SPIE - The International Society for Optical Engineering
Volume8687
ISSN (Print)0277-786X

Conference

ConferenceSPIE Electroactive Polymers Actuators and Devices Conference, EAPAD 2013
Country/TerritoryUnited States
CitySan Diego, CA
Period11/03/1314/03/13

Keywords

  • Capacitance
  • Dielectric
  • Elastomers
  • Electromechanical
  • Energy
  • Generator
  • Viscosity

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