Piezoelectric power generation using friction-induced vibration

作者: Chiharu Tadokoro , Aya Matsumoto , Takuo Nagamine , Shinya Sasaki

DOI: 10.1088/1361-665X/AA7042

关键词:

摘要: In order to examine the feasibility of power generation by using friction-induced vibration with a piezoelectric element, we performed experiments and numerical analysis. experiments, generated in element displacement an oscillator were measured newly developed apparatus that embodied single-degree-of-freedom (1-DOF) system friction. analysis, analytical model 1-DOF friction was proposed simulate experiments. The experimental results demonstrated few microwatts sliding between steel ball plate lubricated glycerol. this study, maximum approximately 10 μW at driving velocity 40 mm s−1 normal load 15 N. good qualitative agreement results. This implies can be applied optimize design vibration.

参考文章(26)
L E Helseth, Excitation of energy harvesters using stick–slip motion Smart Materials and Structures. ,vol. 23, pp. 085024- ,(2014) , 10.1088/0964-1726/23/8/085024
E. Lefeuvre, A. Badel, C. Richard, L. Petit, D. Guyomar, A comparison between several vibration-powered piezoelectric generators for standalone systems Sensors and Actuators A-physical. ,vol. 126, pp. 405- 416 ,(2006) , 10.1016/J.SNA.2005.10.043
Shashank Priya, Advances in energy harvesting using low profile piezoelectric transducers Journal of Electroceramics. ,vol. 19, pp. 165- 182 ,(2007) , 10.1007/S10832-007-9043-4
Dejan Vasic, Yu-Yin Chen, François Costa, Self-powered piezoelectric energy harvester for bicycle conference of the industrial electronics society. ,vol. 28, pp. 2501- 2510 ,(2013) , 10.1007/S12206-014-0407-9
Yaowen Yang, Liya Zhao, Lihua Tang, Comparative study of tip cross-sections for efficient galloping energy harvesting Applied Physics Letters. ,vol. 102, pp. 064105- ,(2013) , 10.1063/1.4792737
Liya Zhao, Lihua Tang, Yaowen Yang, Comparison of modeling methods and parametric study for a piezoelectric wind energy harvester Smart Materials and Structures. ,vol. 22, pp. 125003- ,(2013) , 10.1088/0964-1726/22/12/125003
Renato Caliò, Udaya Rongala, Domenico Camboni, Mario Milazzo, Cesare Stefanini, Gianluca de Petris, Calogero Oddo, Piezoelectric Energy Harvesting Solutions Sensors. ,vol. 14, pp. 4755- 4790 ,(2014) , 10.3390/S140304755
Naohiro Kado, Chiharu Tadokoro, Ken Nakano, Kinetic Friction Coefficient Measured in Tribotesting: Influence of Frictional Vibration Tribology Online. ,vol. 9, pp. 63- 70 ,(2014) , 10.2474/TROL.9.63
HJ Xiang, JJ Wang, ZF Shi, ZW Zhang, None, Theoretical analysis of piezoelectric energy harvesting from traffic induced deformation of pavements Smart Materials and Structures. ,vol. 22, pp. 095024- ,(2013) , 10.1088/0964-1726/22/9/095024
Michaël Peigney, Dominique Siegert, Piezoelectric energy harvesting from traffic-induced bridge vibrations Smart Materials and Structures. ,vol. 22, pp. 095019- ,(2013) , 10.1088/0964-1726/22/9/095019