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用于高频换能器应用的铌和锰共改性铋层状陶瓷NaBiTiO

Nb and Mn Co-Modified NaBiTiO Bismuth-Layered Ceramics for High-Frequency Transducer Applications.

作者信息

Fan Dongming, Niu Huiyan, Liu Kun, Sun Xinhao, Wang Husheng, Shi Kefei, Mo Wen, Jian Zhishui, Wen Li, Shen Meng, Zhao Tianlong, Fei Chunlong, Chen Yong

机构信息

Key Laboratory of Ferro & Piezoelectric Materials and Devices of Hubei Province, Hubei Collaborative Innovation Center for Advanced Organic Chemical Materials, Key Laboratory of Green Preparation and Application for Functional Materials, Ministry of Education, School of Physics and Electronic Science, Hubei University, Wuhan 430062, China.

School of Microelectronics, Xidian University, Xi'an 740071, China.

出版信息

Micromachines (Basel). 2022 Aug 2;13(8):1246. doi: 10.3390/mi13081246.

Abstract

Lead-free environmentally friendly piezoelectrical materials with enhanced piezoelectric properties are of great significance for high-resolution ultrasound imaging applications. In this paper, NaBiTiMnNbO (NBT-Nb-Mn) bismuth-layer-structured ceramics were prepared by solid-phase synthesis. The crystallographic structure, micromorphology, and piezoelectrical and electromechanical properties of NBT-Nb-Mn ceramics were examined, showing their enhanced piezoelectricity ( = 33 pC/N) and relatively high electromechanical coupling coefficient ( = 0.4). The purpose of this article is to describe the development of single element ultrasonic transducers based on these piezoelectric ceramics. The as-prepared high-frequency tightly focused transducer (ƒ-number = 1.13) had an electromechanical coupling coefficient of 0.48. The center frequency was determined to be 37.4 MHz and the -6 dB bandwidth to be 47.2%. According to the B-mode imaging experiment of 25 μm tungsten wires, lateral resolution of the transducer was calculated as 56 μm. Additionally, the experimental results were highly correlated to the results simulated by COMSOL software. By scanning a coin, the imaging effect of the transducer was further evaluated, demonstrating the application advantages of the prepared transducer in the field of high-sensitivity ultrasound imaging.

摘要

具有增强压电性能的无铅环保压电材料对于高分辨率超声成像应用具有重要意义。本文通过固相合成法制备了NaBiTiMnNbO(NBT-Nb-Mn)铋层结构陶瓷。研究了NBT-Nb-Mn陶瓷的晶体结构、微观形貌以及压电和机电性能,结果表明其具有增强的压电性(d33 = 33 pC/N)和相对较高的机电耦合系数(k33 = 0.4)。本文旨在描述基于这些压电陶瓷的单元超声换能器的研制情况。所制备的高频紧密聚焦换能器(ƒ数 = 1.13)的机电耦合系数为0.48。确定中心频率为37.4 MHz,-6 dB带宽为47.2%。根据25μm钨丝的B模式成像实验,计算出该换能器的横向分辨率为56μm。此外,实验结果与COMSOL软件模拟结果高度相关。通过扫描一枚硬币,进一步评估了该换能器的成像效果,证明了所制备换能器在高灵敏度超声成像领域的应用优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf55/9415184/5fd1315956e3/micromachines-13-01246-g001.jpg

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