Arbitrary variable thickness annular piezoelectric ultrasonic transducer based on transfer matrix method

Author:

Dong Yi-Lei,Chen Cheng,Lin Shu-Yu,

Abstract

The variable thickness annular radial piezoelectric ultrasonic transducer can realize impedance transformation and energy concentration, has the advantages of large radiation area and full directivity, and is widely used in power ultrasound, underwater acoustic and other fields. Because solving complex variable thickness metal ring radial vibration wave equation is more difficult, in this paper, the radial vibration of metal rings with variable thickness is transformed into the superposition of the radial vibrations of N metal rings with equal thickness by using the transfer matrix method. The equivalent circuit diagram, the resonance frequency equation and the expression of the displacement amplification coefficient of the radial vibration of the metal thin ring with arbitrary thickness are obtained. The relationship between the displacement amplification coefficient and the geometric size of the cone, power function, exponential and catenary metal rings is analyzed. On this basis, the equivalent circuit and resonance frequency equation of radial vibration of piezoelectric ultrasonic transducer which is composed of a metal ring with variable thickness and a piezoelectric ring with equal thickness are derived. In order to verify the correctness of the theoretical results, the finite element software is used in simulation, and the numerical solutions of the first and second order resonance frequency and displacement amplification coefficients are in good agreement with the theoretical solutions. In this paper, the universal solution of radial vibration of metal ring with arbitrary variable thickness is given, which provides theoretical guidance for designing and optimizing the radial piezoelectric ultrasonic transducers.

Publisher

Acta Physica Sinica, Chinese Physical Society and Institute of Physics, Chinese Academy of Sciences

Subject

General Physics and Astronomy

Reference26 articles.

1. Sun S Z, Li J B 2019 Acta Acust. 44 743
孙淑珍, 李俊宝 2019 声学学报 44 743

2. Liu S Q, Yang X L, Zhang Z L, Chen Z J 2013 Acta Acust. 38 188
刘世清, 杨先莉, 张志良, 陈赵江 2013 声学学报 38 188

3. Jin O K, Jung G L 2007 J. Sound Vib. 300 241

4. Wang H M, Luo D S 2016 Appl. Math. Model. 40 2549

5. Hyun K L, Dabin J 2020 Optik (Stuttg) 222 165480

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