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具有不同压电相分布的2-2连通性水泥/聚合物基压电复合材料的设计、制备及性能

Design, fabrication, and properties of 2-2 connectivity cement/polymer based piezoelectric composites with varied piezoelectric phase distribution.

作者信息

Dongyu Xu, Xin Cheng, Banerjee Sourav, Shifeng Huang

机构信息

Shandong Provincial Key Laboratory of Construction Materials Preparation and Measurement, School of Materials Science and Engineering, University of Jinan , Jinan, Shandong 250022, China.

Department of Mechanical Engineering, University of South Carolina , Columbia, South Carolina 29208, USA.

出版信息

J Appl Phys. 2014 Dec 28;116(24):244103. doi: 10.1063/1.4904931. Epub 2014 Dec 23.

Abstract

The laminated 2-2 connectivity cement/polymer based piezoelectric composites with varied piezoelectric phase distribution were fabricated by employing Lead Zirconium Titanate ceramic as active phase, and mixture of cement powder, epoxy resin, and hardener as matrix phase with a mass proportion of 4:4:1. The dielectric, piezoelectric, and electromechanical coupling properties of the composites were studied. The composites with large total volume fraction of piezoelectric phase have large piezoelectric strain constant and relative permittivity, and the piezoelectric and dielectric properties of the composites are independent of the dimensional variations of the piezoelectric ceramic layer. The composites with small total volume fraction of piezoelectric phase have large piezoelectric voltage constant, but also large dielectric loss. The composite with gradually increased dimension of piezoelectric ceramic layer has the smallest dielectric loss, and that with the gradually increased dimension of matrix layer has the largest piezoelectric voltage constant. The novel piezoelectric composites show potential applications in fabricating ultrasonic transducers with varied surface vibration amplitude of the transducer.

摘要

以钛酸锆酸铅陶瓷为活性相,水泥粉末、环氧树脂和固化剂的混合物为基体相,质量比为4:4:1,制备了具有不同压电相分布的层状2-2连通性水泥/聚合物基压电复合材料。研究了复合材料的介电、压电和机电耦合性能。压电相总体积分数大的复合材料具有大的压电应变常数和相对介电常数,且复合材料的压电和介电性能与压电陶瓷层的尺寸变化无关。压电相总体积分数小的复合材料具有大的压电电压常数,但也有大的介电损耗。压电陶瓷层尺寸逐渐增大的复合材料介电损耗最小,基体层尺寸逐渐增大的复合材料压电电压常数最大。这种新型压电复合材料在制造换能器表面振动幅度不同的超声换能器方面显示出潜在的应用前景。

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