Study on Dry-Coupled Ultrasonic Transducer for Solid Rocket Motor Detection

IF 0.6 4区 工程技术 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Journal of Nanoelectronics and Optoelectronics Pub Date : 2023-06-01 DOI:10.1166/jno.2023.3445
Cai Xiaofeng, N. P. Yadav, Wang Jun
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Abstract

In order to develop a dry-coupled ultrasonic transducer that can detect the internal defects of a solid rocket motor, the piezoelectric vibrator was studied by the finite element method with multiple physical field couplings. Firstly, the vibration modes and corresponding resonant frequencies of the piezoelectric vibrators at 20–300 kHz without power were solved, and it was determined that the piezoelectric vibrator can adopt the structure form of bi-laminated, series three laminated, and parallel three laminated preliminarily. Then the frequency response of the piezoelectric vibrators was analyzed according to the admittance-frequency relation. It was found that the bending vibration mode of bi-laminated and parallel three-laminated boards could be excited when the electrical load was applied to both ends. Then, it is found that the parallel three-layer laminate has a larger amplitude in the direction of thickness and a higher electromechanical conversion efficiency based on transient analysis. Therefore, the parallel three-layer laminate is finally selected as the basic form of a piezoelectric vibrator. In addition, the amplitude performance of piezoelectric vibrators with matching layers and backing is compared and analyzed, and these structures are determined not to be used in the dry coupling transducer.
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用于固体火箭发动机检测的干耦合超声换能器研究
为了研制一种能够检测固体火箭发动机内部缺陷的干耦合超声换能器,采用多物理场耦合的有限元方法对压电振子进行了研究。首先,求解了20 ~ 300 kHz无电源时压电振子的振动模态和对应的谐振频率,初步确定了压电振子可以采用双层、串联三层、并联三层的结构形式。然后根据导纳-频率关系分析了压电振子的频率响应。研究发现,在两端施加电负荷时,双层压板和并联三层压板的弯曲振动模式会被激发。然后,基于瞬态分析发现,并联三层复合材料在厚度方向上具有较大的振幅和较高的机电转换效率。因此,最终选择并联三层板作为压电振子的基本形式。此外,对具有匹配层和衬底的压电振子的幅值性能进行了比较和分析,确定了这种结构不用于干耦合换能器。
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来源期刊
Journal of Nanoelectronics and Optoelectronics
Journal of Nanoelectronics and Optoelectronics 工程技术-工程:电子与电气
自引率
16.70%
发文量
48
审稿时长
12.5 months
期刊最新文献
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