Modeling and analysis of piezoelectric beam with periodically variable cross-sections for vibration energy harvesting

被引:0
作者
M. Hajhosseini
M. Rafeeyan
机构
[1] Yazd University,Department of Mechanical Engineering
来源
Applied Mathematics and Mechanics | 2016年 / 37卷
关键词
vibration energy harvesting; piezoelectric cantilever beam; periodically variable cross-section; vibration band gap; forced vibration analysis; generalized differential quadrature rule (GDQR); O322; 74H45; 74K10; 65D25;
D O I
暂无
中图分类号
学科分类号
摘要
A bimorph piezoelectric beam with periodically variable cross-sections is used for the vibration energy harvesting. The effects of two geometrical parameters on the first band gap of this periodic beam are investigated by the generalized differential quadrature rule (GDQR) method. The GDQR method is also used to calculate the forced vibration response of the beam and voltage of each piezoelectric layer when the beam is subject to a sinusoidal base excitation. Results obtained from the analytical method are compared with those obtained from the finite element simulation with ANSYS, and good agreement is found. The voltage output of this periodic beam over its first band gap is calculated and compared with the voltage output of the uniform piezoelectric beam. It is concluded that this periodic beam has three advantages over the uniform piezoelectric beam, i.e., generating more voltage outputs over a wide frequency range, absorbing vibration, and being less weight.
引用
收藏
页码:1053 / 1066
页数:13
相关论文
共 20 条
  • [1] Kim H. S.(2011)A review of piezoelectric energy harvesting based on vibration International Journal Precision Engineering and Manufacturing 12 1129-1141
  • [2] Kim J. H.(2015)Vibration analysis and active control of nearly periodic two-span beams with piezoelectric actuator/sensor pairs Applied Mathematics and Mechanics 36 279-292
  • [3] Kim J.(2009)Piezoelectric resonance shifting using tunable nonlinear stiffness SPIE Proceeding of Active and Passive Smart Structures and Integrated Systems 7288 7288G-998
  • [4] Li F.(2006)Design of mechanical band-pass filters for energy scavenging Journal of Sound and Vibration 292 987-247
  • [5] Song Z.(2007)Photonic and phononic quasi crystals Journal of Physics D: Applied Physics 40 229-426
  • [6] Reissman T.(2015)Optimal piezoelectric beam shape for single and broadband vibration energy harvesting: modeling, simulation and experimental results Mechanical System and Signal Processing 54–55 417-238
  • [7] Wolff E. M.(1971)Differential quadrature and long-term integration Journal of Mathematical Analysis and Applications 34 235-1566
  • [8] Garcia E.(2009)Analysis of flexural vibration band gaps in periodic beams using differential quadrature method Computer and Structures 87 1559-4663
  • [9] Shahruz S. M.(2016)A differential quadrature procedure for inplane vibration analysis of variable thickness circular arches traversed by a moving point load Applied Mathematical Modelling 40 4640-205
  • [10] Steurer W.(1999)A differential quadrature as a numerical method to solve differential equations Computational Mechanics 24 197-undefined