研究目的
To investigate the effect of the elastic modulus of the passive layer in the cantilever structured PEH on the electromechanical properties and thus harvesting performance.
研究成果
The PEH with the smaller elastic modulus passive layer exhibited almost 53% improvement in the maximum power than that with the higher elastic modulus passive layer, which is attributed to a smaller mechanical damping ratio, higher quality factor, and larger vibration amplitude. This study highlights the importance of optimizing the elastic modulus of the passive layer for efficient energy harvesting from low frequency ambient vibrations.
研究不足
The study focuses on the effect of elastic modulus of the passive layer on the performance of PEHs, but other factors such as the thickness of the piezoelectric and passive layers, and the size and shape of the PEH could also influence the performance.
1:Experimental Design and Method Selection:
Two unimorph type PEHs with different elastic modulus passive layers were fabricated and their output performance was compared under the same acceleration amplitude excitation stimuli.
2:Sample Selection and Data Sources:
Mn-doped Pb(Mg1/3Nb2/3)O3-Pb(Zr, Ti)O3 (PMN-PZT) hard type single crystal fiber composites as piezoelectric layers and Ti alloy plates having different elastic moduli as passive layers were used.
3:List of Experimental Equipment and Materials:
Electromagnetic shaker, vibration controller system, acceleration sensor, laser Doppler vibrometry, multi-channel multimeter, oscilloscope, National Instruments data acquisition devices.
4:Experimental Procedures and Operational Workflow:
PEHs were excited at different frequencies and accelerations, output voltage was measured across various load resistances, and vibration amplitude was measured using LDV.
5:Data Analysis Methods:
Output power was calculated from the output voltage, and damping ratios were estimated from vibration amplitude decay curves.
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PMN-PZT hard type single crystal fiber composites
SFC-2814-P1
Ceracomp Co. Ltd., Korea
Piezoelectric layers in the PEHs
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Ti alloy plates
Passive layers in the PEHs
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NdFeB magnets
Proof mass attached at the free end of the cantilever
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Electromagnetic shaker
To excite the PEHs with different frequencies and accelerations
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Vibration controller system
Logtech Co., Korea
To control the excitation frequencies and accelerations
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Acceleration sensor
PV-41
RION, Japan
To measure the acceleration
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Laser Doppler vibrometry
OFV-5000
Polytec, Germany
To measure the vibration amplitude
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Multi-channel multimeter
2700
Keithley, USA
To measure the harvested voltage across various load resistances
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Oscilloscope
Wave surfer 44Xs-A
Lecroy, USA
To record the output voltage waveforms generated by the harvester
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National Instruments data acquisition devices
To acquire the data automatically
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