Piezoelectrics & Acoustooptics, Volume. 44, Issue 6, 944(2022)
Analysis of Response Characteristics of Piezoelectric Beam under Ultra-Low Amplitude Excitation
[1] [1] RUBES O,CHALUPA J,KSICA F,et al.Development and experimental validation of self-powered wireless vibration sensor node using vibration energy harvester [J].Mechanical Systems and Signal Processing,2021,160:107890.
[2] [2] XU S,XING F,WANG R,et al.Vibration sensor for the health monitoring of the large rotating machinery:review and outlook[J].Sensor Review,2018,38(1):44-64.
[3] [3] BOWEN C R,KIM H A,WEAVER P M,et al.Piezoelectric and ferroelectric materials and structures for energy harvesting applications[J].Energy Environ Sci,2014,7(1):25-44.
[4] [4] BOWEN C R,TAYLOR J,LEBOULBAR E,et al.Pyroelectric materials and devices for energy harvesting applications[J].Energy Environ Sci,2014,7(12):3836-3856.
[5] [5] WU Y,QIU J,ZHOU S,et al.A piezoelectric spring pendulum oscillator used for multi-directional and ultra-low frequency vibration energy harvesting[J].Applied Energy,2018,231:600-614.
[6] [6] YAN B,YU N,ZHANG L,et al.Scavenging vibrational energy with a novel bistable electromagnetic energy harvester[J].Smart Materials and Structures,2020,29(2):025022.
[7] [7] ZHANG Y,WANG T,LUO A,et al.Micro electrostatic energy harvester with both broad bandwidth and high normalized power density[J].Applied Energy,2018,212:362-371.
[10] [10] ZHOU Z,QIN W,ZHU P.Harvesting performance of quad-stable piezoelectric energy harvester:Modeling and experiment[J].Mechanical Systems and Signal Processing,2018,110:260-272.
[11] [11] SOMKUWAR R,CHANDWANI J,DESHMUKH R.Wideband auto-tunable vibration energy harvester using change in centre of gravity[J].Microsystem Technologies,2018,24(7):3033-3044.
[12] [12] ZHOU S,CAO J,ERTURK A,et al.Enhanced broadband piezoelectric energy harvesting using rotatable magnets[J].Applied Physics Letters,2013,102(17):173901.
[14] [14] JACKSON N,STAM F,OLSZEWSKI O Z,et al.Widening the bandwidth of vibration energy harvesters using a liquid-based non-uniform load distribution[J].Sensors and Actuators A:Physical,2016,246:170-179.
[15] [15] HU G,TANG L,DAS R,et al.A two-degree-of-freedom piezoelectric energy harvester with stoppers for achieving enhanced performance[J].International Journal of Mechanical Sciences,2018,149:500-507.
[16] [16] ZHOU K,DAI H L,ABDELKEFI A,et al.Impacts of stopper type and material on the broadband characteristics and performance of energy harvesters[J].AIP Advances,2019,9(3):035228.
[17] [17] ZHOU K,DAI H L,ABDELKEFI A,et al.Theoretical modeling and nonlinear analysis of piezoelectric energy harvesters with different stoppers[J].International Journal of Mechanical Sciences,2020,166:105233.
[18] [18] SEGHIR R,ARSCOTT S.Extended PDMS stiffness range for flexible systems[J].Sensors and Actuators A:Physical,2015,230:33-39.
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HU Zhixin, WANG Wei, WEI Hongtao, XU Xianzhong, LI Zilin, QI Guochen, LIU Pan, WEI Ronghan. Analysis of Response Characteristics of Piezoelectric Beam under Ultra-Low Amplitude Excitation[J]. Piezoelectrics & Acoustooptics, 2022, 44(6): 944
Received: Apr. 18, 2022
Accepted: --
Published Online: Jan. 27, 2023
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