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Theoretical analysis of a resistance adjusting type piezoelectric cylindrical transducer

机译:电阻调节式压电圆柱换能器的理论分析

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A resistance adjusting type piezoelectric cylindrical transducer is studied in this work. The transducer's functional components are two radially polarized piezoelectric short tubes. One of them is utilized to actuate the transducer, while the other is used to adjust its electromechanical characteristics, such as resonance and anti-resonance frequencies as well as the corresponding electromechanical coupling factor, through changing a connecting resistance. Based on the plane stress assumption, the electromechanical characteristics of this transducer in radial vibration are studied, and the expressions of input electric impedance are derived analytically. The theoretical solution is validated by comparing the results with a special case in a previous work. Furthermore, numerical analysis is conducted to study the effects of resistance and electrode on the transducer's electromechanical characteristics. The results indicate that adjusting the resistance enables the transducer's multi-frequency characteristics, and furthermore, there exists a special matching resistance that results in the transducer's optimal electromechanical coupling factor. This study provides a theoretical guide for designing and optimizing the resistance adjusting type piezoelectric cylindrical transducer, which has a potential application in the underwater sound and ultrasonic fields, among others.
机译:在这项工作中研究了一种电阻调节型压电圆柱传感器。换能器的功能组件是两个径向极化的压电短管。其中一个用于驱动换能器,而另一个用于通过改变连接电阻来调整其机电特性,例如谐振和反谐振频率以及相应的机电耦合系数。基于平面应力假设,研究了该换能器在径向振动中的机电特性,并通过解析推导得到了输入阻抗的表达式。通过将结果与以前的工作中的特殊情况进行比较,可以验证理论解决方案。此外,进行了数值分析,以研究电阻和电极对换能器机电特性的影响。结果表明,调节电阻可以实现换能器的多频特性,此外,还存在一种特殊的匹配电阻,可以使换能器具有最佳的机电耦合系数。这项研究为设计和优化电阻调节型压电圆柱形换能器提供了理论指导,该传感器在水下声场和超声场等领域具有潜在的应用前景。

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