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Design of Piezoelectric Ultrasonic Transducer Based on Doped PDMS

机译:基于掺杂PDMS的压电超声换能器设计

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摘要

The performance of the ultrasonic transducer will directly affect the accuracy of ultrasonic experimental measurement. Therefore, in order to meet the requirements of a wide band, a kind of annular 2-2-2 piezoelectric composite is proposed based on doped PDMS. In this paper, the transducer structure consisted of PZT-5A piezoelectric ceramics and PDMS doped with 3 wt.% Al2O3:SiO2 (1:6) powder, which constituted the piezoelectric composite. MATLAB and COMSOL software were used for simulation. Meanwhile, the electrode materials were selected. Then, the performance of the designed annular 2-2-2 ultrasonic transducer was tested. The simulation results show that when the polymer phase material of the piezoelectric ultrasonic transducer is doped PDMS, the piezoelectric phase and the ceramic substrate account for 70% of the total volume, the polymer phase accounts for 30% of the total volume, and the maximum frequency band width can reach 90 kHz. The experimental results show that the maximum bandwidth of −3 dB can reach 104 kHz when the frequency is 160 kHz. The results of the electrode test show that the use of Cu/Ti electrode improves the electrical conductivity of the single electrode. In this paper, the annular 2-2-2 transducer designed in the case of small volume had the characteristics of a wide frequency band, which was conducive to the miniaturization and integration of the transducer. Therefore, we believe that the annular 2-2-2 piezoelectric composite has broad application prospects.
机译:超声波换能器的性能将直接影响超声波实验测量的准确性。因此,为了满足宽带的要求,基于掺杂PDMS提出了一种环形2-2-2压电复合物。在本文中,换能器结构由PZT-5A压电陶瓷和掺杂有3重量%的PDMS。%Al 2 O 3:SiO 2(1:6)粉末,其构成压电复合物。 MATLAB和COMSOL软件用于模拟。同时,选择电极材料。然后,测试设计的环形2-2-2超声换能器的性能。仿真结果表明,当压电超声换能器的聚合物相材料掺杂PDMS时,压电相和陶瓷衬底占总体积的70%,聚合物相位占总体积的30%,最大值频段宽度可达到90 kHz。实验结果表明,当频率为160 kHz时,-3 dB的最大带宽可以达到104 kHz。电极测试的结果表明,使用Cu / Ti电极改善了单个电极的电导率。在本文中,在体积小的情况下设计的环形2-2-2-2-2换能器具有宽频带的特点,这有利于换能器的小型化和整合。因此,我们认为,环形2-2--压电复合材料具有广泛的应用前景。

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