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Bending Vibration Characteristics of a Novel Piezoelectric Composite Trilaminar Vibrator

机译:一种新型压电复合三盲蟹振动器的弯曲振动特性

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摘要

In this work, the bending vibration characteristics of the 2-2 piezoelectric composite trilaminar vibrator are studied by the finite element simulation and experiment. The simulation results show that the trilaminar vibrator has lower resonant frequency and larger vibration displacement under the fixed boundary condition compared with that of the free boundary condition, and its performance is relatively good. Then, the 2-2 piezoelectric composite and piezoelectric ceramic trilaminar vibrators are fabricated and their performances are tested under the fixed boundary condition. The experimental and simulation results show that the vibrator has pure bending vibration characteristics in the frequency band of 1.2–1.4 kHz, especially the 2-2 piezoelectric composite vibrator, which has lower frequency, higher electromechanical coupling coefficient and larger bending vibration displacement; thus, the 2-2 piezoelectric composite trilaminar vibrator is a better choice for the fabrication of a low-frequency transducer.
机译:在这项工作中,通过有限元模拟和实验研究了2-2压电复合三柳酰胺振动​​器的弯曲振动特性。仿真结果表明,与自由边界条件相比,三柳偕振动器在固定边界条件下具有较低的谐振频率和较大的振动位移,其性能相对较好。然后,制造2-2压电复合材料和压电陶瓷三柳酰胺振动​​器,并在固定边界条件下测试它们的性能。实验和仿真结果表明,振动器在1.2-1.4 kHz的频带中具有纯弯曲振动特性,尤其是2-2压电复合振动器,具有较低的频率,更高的机电耦合系数和较大的弯曲振动位移;因此,2-2压电复合三柳酰胺振动​​器是制造低频换能器的更好选择。

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