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致密和多孔压电陶瓷圆盘水听器的有限元建模

Finite element modelling of dense and porous piezoceramic disc hydrophones.

作者信息

Ramesh R, Kara H, Bowen C R

机构信息

Materials Research Centre, Department of Engineering and Applied Sciences, University of Bath, Bath, UK.

出版信息

Ultrasonics. 2005 Jan;43(3):173-81. doi: 10.1016/j.ultras.2004.05.001.

Abstract

The acoustic characteristics of dense and porous piezoceramic disc hydrophones have been studied by finite element modelling (FEM). The FEM results are validated initially by an analytical model for a simple disc of dense piezoceramic material and then it is extended to a porous piezoceramic disc replicating a foam-reticulated sample. Axisymmetric model was used for dense piezoceramic hydrophone due its regular geometric shape. 3-dimensional model was used for the porous piezoceramics, since the unit cell model is inadequate to fully represent transducers of finite lateral dimensions. The porous PZT discs have been synthesised by foam-reticulation technique. The electrical impedance and the receiving sensitivity of the hydrophones in water are evaluated in the frequency range 10-100 kHz. The model results are compared with the experimental data. The receiving sensitivity of piezocomposite hydrophones is found to be reasonably constant over the frequency range studied. The sharp resonance peaks observed for the dense piezoceramic hydrophone has broadened to a large extent for porous piezoceramic hydrophones, indicating higher losses. The flat frequency response suggests that the 3-3 piezocomposites are useful for wide-band hydrophone applications.

摘要

通过有限元建模(FEM)研究了致密和多孔压电陶瓷圆盘水听器的声学特性。有限元建模结果首先通过针对简单致密压电陶瓷材料圆盘的解析模型进行验证,然后扩展到复制泡沫网状样品的多孔压电陶瓷圆盘。由于致密压电陶瓷水听器具有规则的几何形状,因此使用轴对称模型。对于多孔压电陶瓷,则使用三维模型,因为单元胞模型不足以完全表征具有有限横向尺寸的换能器。多孔PZT圆盘是通过泡沫网状技术合成的。在10 - 100 kHz频率范围内评估了水听器在水中的电阻抗和接收灵敏度。将模型结果与实验数据进行了比较。发现压电复合水听器的接收灵敏度在所研究的频率范围内相当恒定。致密压电陶瓷水听器观察到的尖锐共振峰在多孔压电陶瓷水听器中已大幅展宽,表明损耗更高。平坦的频率响应表明3 - 3型压电复合材料可用于宽带水听器应用。

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