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制备 PIMNT/环氧 1-3 复合材料和超声换能器用于无损评估。

Fabrication of PIMNT/epoxy 1-3 composites and ultrasonic transducer for nondestructive evaluation.

机构信息

Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai, China.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2011 Sep;58(9):1774-81. doi: 10.1109/TUFFC.2011.2014.

Abstract

In this paper, PIMNT/epoxy 1-3 composites with different volume fractions were prepared by the dice-and-fill method for application in ultrasonic transducers. The theoretical and experimental properties at different volume fractions and the temperature stability of the electromechanical property were investigated. The highest electromechanical coupling factor k(t) was obtained as 0.833 with the volume fraction of 0.58 and k(t) changed little below the Curie temperature of the single crystal. Afterward, an angle-beam transverse wave ultrasonic transducer using the fabricated composite was designed and manufactured based on the simulation of the KLM model and commercial software. The assembled prototype transducer showed large improvement in two-way insertion loss, relative bandwidth at -6 dB, surplus sensitivity, and axial resolution, which were -24.3 dB, 107%, 85 dB, and 28 dB, respectively, compared with a commercial PZT-based composite transducer.

摘要

本文采用“骰子填充法”制备了不同体积分数的 PIMNT/环氧 1-3 复合材料,用于超声换能器。研究了不同体积分数下的理论和实验性能以及机电性能的温度稳定性。在体积分数为 0.58 时,获得了最高的机电耦合系数 k(t)为 0.833,在单晶居里温度以下,k(t)变化很小。然后,根据 KLM 模型和商业软件的模拟,设计并制造了使用所制备复合材料的角束横波超声换能器。组装后的原型换能器在双向插入损耗、-6dB 相对带宽、剩余灵敏度和轴向分辨率方面都有了很大的提高,分别为-24.3dB、107%、85dB 和 28dB,与商用 PZT 基复合材料换能器相比。

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