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Theoretical and experimental investigations of thickness-stretch modes in 1-3 piezoelectric composites

机译:1-3压电复合材料厚度拉伸模式的理论与实验研究

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Bulk piezoelectric ceramics operating in thickness-stretch (TSt) modes have been widely used in acoustic-related devices. However, the fundamental TSt waves are always coupled with other modes, and the occurrence of these spurious modes in bulk piezoelectric ceramics affects its performance. To suppress the spurious modes, 1 -3 piezoelectric composites are promising candidates. However, theoretical modeling of multiphase ceramic composite objects is very complex. In this study, a 1-3 piezoelectric composite sample and a bulk piezoelectric sample are fabricated. The electrical impedance of these two samples are compared. A simple analytical TSt vibration mode from the three dimensional equations of linear piezoelectricity is used to model the performance of 1-3 piezoelectric composites. The theoretical results agree well with the experimental results.
机译:在厚度拉伸(TST)模式下运行的批量压电陶瓷已广泛用于声学相关设备。然而,基本的TST波总是与其他模式耦合,并且散装压电陶瓷中这些杂散模式的发生影响其性能。为了抑制杂散模式,1 -3压电复合材料是有前途的候选者。然而,多相陶瓷复合物体的理论建模非常复杂。在该研究中,制造1-3个压电复合样品和散装压电样品。比较这两个样品的电阻抗。来自线性压电三维方程的简单分析TST振动模式用于模拟1-3压电复合材料的性能。理论结果与实验结果很好。

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