Xia Lili, Wang Hongwei, Huang Qiguo
School of Science, Beijing Information Science and Technology University, Beijing 100192, China.
Materials (Basel). 2021 Oct 11;14(20):5971. doi: 10.3390/ma14205971.
A stacked three-phase piezoelectric composites ring array underwater ultrasound transducer was developed in this paper. The circular structure of three-phase piezoelectric composite with a large open angle was improved based on the 1-3 piezoelectric composites. The structure size of the transducer's sensitive component was designed by using ANSYS simulation software, and the single-ring samples of three-phase piezoelectric composites with different thicknesses were fabricated. Based on the bandwidth broadening theory of multimode coupled vibration, the piezoelectric composite ring-shaped sensitive component was fabricated by the piezoelectric composite curved-surface-forming process. According to the design structure of the transducer, the stacked three-phase piezoelectric composites ring array underwater ultrasound transducer was processed. The experimental results show that the maximum transmission voltage response is 154 dB, the open angle of the horizontal beam reaches 360°, and the bandwidth of -3 dB is 86 kHz. The developed transducers achieved a high frequency, broadband, and large open angle to radiate sound waves.
本文研制了一种叠层式三相压电复合材料环形阵列水下超声换能器。在1-3型压电复合材料的基础上,对具有大开口角的三相压电复合材料的圆形结构进行了改进。利用ANSYS仿真软件设计了换能器敏感元件的结构尺寸,并制作了不同厚度的三相压电复合材料单环样品。基于多模耦合振动的带宽展宽理论,采用压电复合材料曲面成型工艺制作了压电复合环形敏感元件。根据换能器的设计结构,加工了叠层式三相压电复合材料环形阵列水下超声换能器。实验结果表明,最大传输电压响应为154dB,水平波束开口角达到360°,-3dB带宽为86kHz。所研制的换能器实现了高频、宽带和大开口角的声波辐射。