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功能梯度压电超声换能器的建模

Modeling of functionally graded piezoelectric ultrasonic transducers.

作者信息

Rubio Wilfredo Montealegre, Buiochi Flávio, Adamowski Julio Cezar, Silva Emílio Carlos Nelli

机构信息

Department of Mechatronics and Mechanical Systems Engineering, Escola Politecnica da Universidade de São Paulo, Av. Prof. Mello Moraes, 2231 - Cidade Universitária, São Paulo, SP 05508-900, Brazil.

出版信息

Ultrasonics. 2009 May;49(4-5):484-94. doi: 10.1016/j.ultras.2009.01.001. Epub 2009 Jan 9.

Abstract

The application of functionally graded material (FGM) concept to piezoelectric transducers allows the design of composite transducers without interfaces, due to the continuous change of property values. Thus, large improvements can be achieved, as reduction of stress concentration, increasing of bonding strength, and bandwidth. This work proposes to design and to model FGM piezoelectric transducers and to compare their performance with non-FGM ones. Analytical and finite element (FE) modeling of FGM piezoelectric transducers radiating a plane pressure wave in fluid medium are developed and their results are compared. The ANSYS software is used for the FE modeling. The analytical model is based on FGM-equivalent acoustic transmission-line model, which is implemented using MATLAB software. Two cases are considered: (i) the transducer emits a pressure wave in water and it is composed of a graded piezoceramic disk, and backing and matching layers made of homogeneous materials; (ii) the transducer has no backing and matching layer; in this case, no external load is simulated. Time and frequency pressure responses are obtained through a transient analysis. The material properties are graded along thickness direction. Linear and exponential gradation functions are implemented to illustrate the influence of gradation on the transducer pressure response, electrical impedance, and resonance frequencies.

摘要

将功能梯度材料(FGM)概念应用于压电换能器,由于特性值的连续变化,可设计出无界面的复合换能器。因此,能实现大幅改进,如降低应力集中、提高粘结强度和带宽。本文提出设计并对功能梯度材料压电换能器进行建模,并将其性能与非功能梯度材料换能器进行比较。开展了功能梯度材料压电换能器在流体介质中辐射平面压力波的解析建模和有限元(FE)建模,并对结果进行了比较。使用ANSYS软件进行有限元建模。解析模型基于功能梯度材料等效声传输线模型,利用MATLAB软件实现。考虑了两种情况:(i)换能器在水中发射压力波,由梯度压电陶瓷圆盘以及由均质材料制成的背衬层和匹配层组成;(ii)换能器没有背衬层和匹配层;在这种情况下,不模拟外部负载。通过瞬态分析获得时间和频率压力响应。材料特性沿厚度方向呈梯度变化。采用线性和指数梯度函数来说明梯度对换能器压力响应、电阻抗和共振频率的影响。

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