High-power piezoelectric vibration model considering the interaction between nonlinear vibration and temperature increase

Ultrasonics ◽  
2019 ◽  
Vol 93 ◽  
pp. 93-101 ◽  
Author(s):  
Susumu Miyake ◽  
Ryohei Ozaki ◽  
Hiroshi Hosaka ◽  
Takeshi Morita
2018 ◽  
Vol 94 (3) ◽  
pp. 2219-2241 ◽  
Author(s):  
Hui Li ◽  
Pengcheng Xue ◽  
Zhongwei Guan ◽  
Qingkai Han ◽  
Bangchun Wen

Author(s):  
Shan Gao ◽  
Hongrui Ao ◽  
Hongyuan Jiang

Abstract Piezoelectric vibration energy harvesting technology has attracted significant attention for its applications in integrated circuits, microelectronic devices and wireless sensors due to high power density, easy integration, simple configuration and other outstanding features. Among piezoelectric vibration energy harvesting structures, cantilevered beam is one of the simplest and most commonly used structures. In this work, a vertically staggered rectangle-through-holes (VS-RTH) cantilevered model of mesoscale piezoelectric energy harvester is proposed, which focuses on the multi-directional vibration collection and low resonant frequency. To verify the output performances of the device, this paper employs basic materials and fabrication methods with mathematical modeling. The simulations are conducted through finite element methods to discuss the properties of VS-RTH energy harvester on resonant frequency and output characteristics. Besides, an energy storage circuit with high power collection rate is adopted as collection system. This harvester is beneficial to the further application of devices working with continuous vibrations and low power requirements.


2013 ◽  
Vol 311 ◽  
pp. 105-110
Author(s):  
Shueei Muh Lin

In this study, the nonlinear vibration model of structure with cross support is established. The conventional structure without cross support is linear and easy to be investigated. Unfortunately, its dynamic stability and vibration due to earthquake excitation are usually not acceptable. For suppressing the structural vibration the cross support composed of the elastic connecting bar and damper is considered here. This is a passive control design. Beside, due to the supporting arrangement, the mathematical model of the structure is highly nonlinear. In this study, the analytical solution for this system is derived. Further, the effects of control parameters on the vibration response are investigated.


2007 ◽  
Vol 25 (5) ◽  
pp. 1231-1237 ◽  
Author(s):  
Takashi Matsui ◽  
Kazuhide Nakajima ◽  
Kenji Kurokawa ◽  
Katsusuke Tajima ◽  
Kazuyuki Shiraki ◽  
...  

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