期刊
SMART MATERIALS AND STRUCTURES
卷 26, 期 5, 页码 -出版社
IOP PUBLISHING LTD
DOI: 10.1088/1361-665X/aa6721
关键词
Euler column vibration isolation; high-static-low-dynamic stiffness; elastica theory; piezoelectric energy harvesting; multi-functional energy harvesting device
资金
- University of Georgia Research Foundation
A new device that combines vibration isolation and energy harvesting is modeled, simulated, and tested. The vibration isolating portion of the device uses post-buckled beams as its spring elements. Piezoelectric film is applied to the beams to harvest energy from their dynamic flexure. The entire device operates passively on applied base excitation and requires no external power or control system. The structural system is modeled using the elastica, and the structural response is applied as forcing on the electric circuit equation to predict the output voltage and the corresponding harvested power. The vibration isolation and energy harvesting performance is simulated across a large parameter space and the modeling approach is validated with experimental results. Experimental transmissibilities of 2% and harvested power levels of 0.36 mu W are simultaneously demonstrated. Both theoretical and experimental data suggest that there is not necessarily a trade-off between vibration isolation and harvested power. That is, within the practical operational range of the device, improved vibration isolation will be accompanied by an increase in the harvested power as the forcing frequency is increased.
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