TY - JOUR
T1 - Promote performance of vibration energy harvesting by amplified inertial force and clamped piezoelectric beams
AU - Liu, Qi
AU - Qin, Weiyang
AU - Yang, Yongfeng
AU - Zhou, Zhiyong
N1 - Publisher Copyright:
© 2022 Elsevier Ltd
PY - 2022/10/1
Y1 - 2022/10/1
N2 - In this study, a novel vibration energy harvester is proposed, in which the amplified inertial force of a mass acts on two clamped piezoelectric beams to make them execute large-amplitude vibrations densely and produce large outputs. The harvester is composed of an inertial mass, two linkages and two clamped beams. Under excitation, the inertial force generated by the mass can be amplified by the linkages and make the clamped beams deflect easily. Especially, the beam will deflect four times in a cycle, thus it can produce the pulse voltage densely. The theoretical model is established and corresponding simulations are carried out. The validation experiment was conducted. For a low-frequency excitation, the piezoelectric beam can be driven to oscillate with many super-harmonic components, this can increase the electric output in a period. The random experiments prove that the harvester could produce a fairly large output under weak excitation. For the excitation of PSD = 0.06 g2/Hz, it can generate a root-mean-square power of 0.115 mW through a PZT layer of 25 mm × 10 mm.
AB - In this study, a novel vibration energy harvester is proposed, in which the amplified inertial force of a mass acts on two clamped piezoelectric beams to make them execute large-amplitude vibrations densely and produce large outputs. The harvester is composed of an inertial mass, two linkages and two clamped beams. Under excitation, the inertial force generated by the mass can be amplified by the linkages and make the clamped beams deflect easily. Especially, the beam will deflect four times in a cycle, thus it can produce the pulse voltage densely. The theoretical model is established and corresponding simulations are carried out. The validation experiment was conducted. For a low-frequency excitation, the piezoelectric beam can be driven to oscillate with many super-harmonic components, this can increase the electric output in a period. The random experiments prove that the harvester could produce a fairly large output under weak excitation. For the excitation of PSD = 0.06 g2/Hz, it can generate a root-mean-square power of 0.115 mW through a PZT layer of 25 mm × 10 mm.
KW - Amplified inertial force induced
KW - Bi-stable energy harvester
KW - Double clamped piezoelectric beams
UR - http://www.scopus.com/inward/record.url?scp=85130617739&partnerID=8YFLogxK
U2 - 10.1016/j.ymssp.2022.109291
DO - 10.1016/j.ymssp.2022.109291
M3 - 文章
AN - SCOPUS:85130617739
SN - 0888-3270
VL - 178
JO - Mechanical Systems and Signal Processing
JF - Mechanical Systems and Signal Processing
M1 - 109291
ER -