期刊文献+

磁场增强压电悬臂梁震动发电装置 被引量:6

Magnetic Field Enhanced Piezoelectric Cantilever-Structure Vibration Generator
在线阅读 下载PDF
导出
摘要 在压电悬臂梁的自由端施加非均匀磁力增加梁的振幅,探索研究了磁力对悬臂梁的谐振频率漂移、输出电压和输出功率的影响。结果表明,引入非均匀磁场斥力,压电悬臂梁的输出电压和输出功率得到明显提高。当负载电阻为100 kΩ,振动台(LDS)用0.200 V正弦电压驱动时,由尺寸75 mm×7.8 mm×0.35 mm的锆钛酸铅镧(PLZT)长压电片和80 mm×7.8 mm×0.10 mm黄铜片构成的压电悬臂梁在谐振频率的电压和功率输出分别为19.02 V和1.8 mJ。 The swing amplitude of the piezoelectric cantilever can be improved via applying a non-uniform magnetic force on its free end.The effect of the magnetic force on the resonant frequency shift,output voltage and output power of the cantilever has been investigated.The results showed that the output voltage and output power of the cantilever could be improved obviously when a nonlinear magnetic repulsion force was applied.When a 100 kΩ resistor was loaded and the vibrator(LDS,Ling Dynamic System) was driven by 0.200 V sine wave voltage,the output voltage and output power of the cantilever,which was composed of a piece of PLZT(size of 75 mm×7.8 mm×0.35 mm) and a piece of brass(size of 80 mm×7.8 mm×0.10 mm),were found to be 19.02 V and 1.8 mJ respectively at resonant frequency.
出处 《压电与声光》 CSCD 北大核心 2011年第1期85-88,92,共5页 Piezoelectrics & Acoustooptics
基金 香港政府研究基金资助项目(1-BBZ3 G-U561)
关键词 压电 悬臂梁 振动传感器 压电发电 磁场增强振动 piezelectric cantilever vibration sensor piezoelectric generator magnetic field enhanced vibration
  • 相关文献

参考文献7

  • 1XING Zengping, LI Jiefang, VIEHLAND D. Giant magnetoelectric effect in Pb(Zr,Ti)O-bimorph/NdFeB laminate device [J]. Appl Phys Lett, 2008, 93 ( 1 ) 013505-013509.
  • 2LOBONTIU N, LUPEA I, ILIC R, et al. Modeling, design,and characterization of multiseg-ment cantilevers for resonant mass detection[J]. J Appl Phys,2008,103 (6):064306-064315.
  • 3WANG Zhuo, XU Yong. Vibration energy harvesting device based on air-spaced piezo-eleetrie cantilevers[J]. Appl Phys Lett,2007,90(26)263512-263514.
  • 4CHUNG H C,KUMMARI K L,CROUCHER S J,et al. Development of piezoelectric fans for flapping wing application[J]. Sens Actuators A, 2009,149 (1) : 136- 142.
  • 5ALLAMEH S M, AKOGWU O,COLLIN-SON M, et al. Piezoelectric generators for biomedical and dental applications: Effects of cyclic loading[J]. J Mater Sci Mater Med,2007,18(1) :39-45.
  • 6JEONG W Y,SHIH W Y,MUTHARA-SAN R,et al. In situ cell detection using piezoelectric lead zirconate titanat-stainless steel cantilevers [J].J Appl Phys, 2003,93 (1) : 619-623.
  • 7阚君武,唐可洪,王淑云,杨志刚,贾杰,曾平.压电悬臂梁发电装置的建模与仿真分析[J].光学精密工程,2008,16(1):71-75. 被引量:94

二级参考文献2

共引文献93

同被引文献48

  • 1杜小振,褚金奎,朴相镐,张海军.基于微型悬臂梁的发电机制探索[J].中国机械工程,2005,16(Z1):41-43.
  • 2闵琳,权利,莫会成.永磁材料和永磁电机[J].电气技术,2006,7(7):14-16. 被引量:14
  • 3ROUNDY S J. Energy Scavenging for Wireless Sensor Nodes with a Focus on Vibration to Electricity Conversion [M]. New York: Spring,2003.
  • 4沙山克·普里亚(印),丹尼尔·茵曼(美)著.能量收集技术[M].南京:东南大学出版社,2011:175-203.
  • 5RODRIGUEZ G A A,DUROU H, OURAK L, et al.. Fabrication and simulation of a PZT energy harvester MEMS [C]. Proceedings of Power MEMS 2008 and micro MEMS2008, November 9- 12, 2008, Japan: Sendai,2008: 193-196.
  • 6COTTONE F, VOCCA H, GAMMAITONI L. Nonlinear energy harvesting [J]. Phys Rev Lett, 2009,102(8):080601-4.
  • 7GAMMAITONI L, NERI I, VOCCA H. Nonlinear oscillators for vibration energy harvesting [J]. Appl Phys Lett, 2009, 94(16) :164102-3.
  • 8STANTON S C,MCGEHEE C C, MANN B P. Non linear dynamics for broadband energy harvesting: Investigation of a bistable piezoelectric inertial generator [J]. Physica D: Nonlinear Phenomena, 2010, 239 (10) : 640-653.
  • 9ANDO B, BAGLIO S, TRIGONA C, et al.. Non linear mechanism in MEMS devices for energy har vester applications [J]. Journal of Micromechan ics and Microengineering, 2010, 20 : 125020.
  • 10COTTONE F, MINCIGRUCCI R, NERI I, et al.. Nonlinear kinetic energy harvesting [J]. Procedia Computer Science, 2011,7 : 190-191.

引证文献6

二级引证文献31

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部