Abstract
Viscoelasticity dissipates the mechanical energy, leading to a reduction of energy conversion efficiency in both dielectric elastomer (DE) actuators and generators. By measuring the uniaxial tension-recovery experiments of very-high-bond-based DE, this article quantitatively presents the effect of viscoelasticity on energy harvesting performance of DE generators. By employing a DE strip energy harvester with constant surface charge, an analytical model is established to calculate the generated electrical energy and energy conversion efficiency. Numerical results demonstrate that viscoelasticity has a significant influence on DE energy harvesting performance.
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Zhang, J., Wang, Y., Chen, H., & Li, B. (2015). Energy harvesting performance of viscoelastic polyacrylic dielectric elastomers. International Journal of Smart and Nano Materials, 6(3), 162–170. https://doi.org/10.1080/19475411.2015.1092480
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