环形压电阵列产生声场的仿真与实验验证

V. Contreras, L. Leija, A. Vera, M. Gutiérrez, L. Castellanos, I. Bazán
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引用次数: 2

摘要

在超声换能器领域,产生冷冻环波产生了在生物医学应用方面的趋势。本文提出采用有限元法对具有10个环的换能器进行仿真,找出声场的分布规律,并得到附着在Castellanos等人设计的真实换能器上的模型。这项工作的重点是获得的声场结果尽可能接近这些实际测量,所有这些过程都需要:几何,压电材料的定义,控制问题物理的有限元方程和网格的分辨率。由此得到的结果显示与实际声场测量中获得的模式相似,以便提出扩展这项工作,以找到使用FEM进行换能器建模的组合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation and experimental verification of the acoustic field produced by an annular piezoelectric array
In the field of ultrasound transducers to generate frozen rings waves generated a tendency for use in biomedical applications. This paper proposes simulate through Finite Element Method (FEM) simulation of a transducer with 10 rings to find patterns of acoustic field and get a model attached to the real transducer designed by Castellanos et al [3]. This work focuses on obtained results of acoustic field as close as possible to those real measurements, with all this process entails: geometry, the definition of materials piezoelectric, the FEM equations governing the physics of problem and the resolution of the mesh. Whereby are obtained results showing patterns similar to those obtained in the real acoustic field measurements, in order to propose to extend this work to find the combination of this transducer modeling using the FEM.
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