Title :
Single crystal PMN-PT/Epoxy 1-3 composite for energy-harvesting application
Author :
Ren, Kailiang ; Liu, Yiming ; Geng, Xuecang ; Hofmann, Heath F. ; Zhang, Qiming M.
Author_Institution :
Dept. of Electr. Eng., Pennsylvania State Univ., University Park, PA, USA
fDate :
3/1/2006 12:00:00 AM
Abstract :
One key parameter in using electroactive materials to harvest electric energy from mechanical sources is the energy conversion efficiency. Recently, it was shown that, in the relaxor ferroelectric PMN-PT single crystals, a very high longitudinal electromechanical coupling factor (>90%) can be obtained. This paper investigates energy harvesting using 1-3 composites of PMN-PT single crystals in a soft epoxy matrix. It is shown that 1-3 composites enable the single crystals operating in the longitudinal mode to achieve high efficiency for energy harvesting, and the soft-polymer, matrix-supported single-crystal rods maintain high mechanical integrity under different external loads. For comparison, 1-3 composites with piezoceramic PZT also are investigated in energy-harvesting applications, and the results show that the high coupling factor of single crystal PMN-PT 1-3 composites leads to much higher electric energy output for similar mechanical energy input. The harvested energy density of 1-3 composite with single crystal (22.1 mW/cm/sup 3/ under a stress of 40.4 MPa) is about twice of that harvested with PZT ceramic 1-3 composite (12 mW/cm/sup 3/ under a stress of 39 MPa). At a higher stress level, the harvested-energy density of 1-3 PMN-PT single crystal composite can reach 96 mW/cm/sup 3/.
Keywords :
direct energy conversion; filled polymers; lead compounds; piezoceramics; relaxor ferroelectrics; stress effects; PMN-PbTiO/sub 3/; PbMgO3NbO3-PbTiO3; electric energy output; electroactive materials; energy conversion efficiency; energy density; energy-harvesting; longitudinal electromechanical coupling factor; matrix-supported single-crystal rods; mechanical energy input; mechanical sources; piezoceramic PZT; relaxor ferroelectric; single crystal PMN-PT/Epoxy 1-3 composite; soft epoxy matrix; soft-polymer; stress level; Ceramics; Composite materials; Crystalline materials; Crystals; Ferroelectric materials; Impedance; Mechanical energy; Power electronics; Relaxor ferroelectrics; Stress;
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
DOI :
10.1109/TUFFC.2006.1610572