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EXPERIMENTAL STUDY ON POWER GENERATION AND DYNAMICAL BEHAVIOR OF THE CANTILEVERED PIEZOELECTRIC BEAM WITH THE UNILATERAL LAYER SEPARATE

机译:单侧层分开悬臂压电梁发电和动力学行为的实验研究

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This paper investigates the complicated dynamic behavior and power generation efficiency of the cantilevered laminated composite piezoelectric beam with the unilateral layer separate. The effect of the external excitation on the voltage output, the impacts of the layered length of composite layers and the influence of the magnetic distance on the voltage output and the effective frequency bandwidth are examined. Simultaneously, the output voltage and the effective frequency bandwidth of the traditional cantilevered laminated composite piezoelectric beam are measured experimentally to verify the developed model. The amplitude of the harmonic excitation is given the certain value and is not changed. Experimental results show that the developed structure has lower natural frequency, great voltage output and great effective frequency bandwidth when the length of the separate parts between composite layers is in the range. For the different layered lengths of the developed bistable piezoelectric beam, there exist the optimal magnetic distance and an optimal layered length, respectively. The power generation efficiency of the developed bistable piezoelectric beam is better than that of the developed monostable piezoelectric beam. When the layered length of the separate parts between composite layers is optimal, the voltage output of the piezoelectric beam has four peak voltages. In addition, the power generation efficiency of the developed structure are superior to that of the traditional one. The maximum peak voltage of this structure is 6.73 times than that of the traditional piezoelectric beam, and its effective frequency bandwidth promotes 8.4 times.
机译:本文研究了悬臂式层压复合压电梁的复杂动态行为和发电效率与单侧层分开。外部激励对电压输出的影响,复合层的层状长度的冲击及对电压输出的磁距离和有效频率带宽的影响。同时,通过实验测量传统的悬臂式层压复合压电束的输出电压和有效频率带宽以验证开发的模型。谐波激励的幅度给出了一定的值并且没有改变。实验结果表明,当复合层之间的单独部件的长度在该范围内时,发达的结构具有较低的固有频率,极大的电压输出和大有效频率带宽。对于开发的双稳态压电束的不同分层长度,分别存在最佳磁距和最佳分层长度。开发的双稳态压电束的发电效率优于开发的单稳态压电束的发电效率。当复合层之间的单独部件的分层长度是最佳的时,压电束的电压输出具有四个峰值电压。此外,开发结构的发电效率优于传统的发电效率。该结构的最大峰值电压比传统压电梁的最大峰值电压为6.73倍,其有效频率带宽促进了8.4倍。

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