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高性能钐掺杂铅锆钛酸铅基压电陶瓷的超低温烧结

Ultralow Temperature Sintering of High-Performance Sm-Doped Pb(Zr,Ti)O-Based Piezoelectric Ceramics.

作者信息

Ma Zechi, Yuan Zixuan, Yao Zhonghua, Chen Jiangxue, Hao Hua, Cao Minghe, Liu Hanxing

机构信息

State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, School of Material Science and Engineering, Wuhan University of Technology, Wuhan 430070, China.

Sanya Science and Education Innovation Park, Wuhan University of Technology, Sanya 572000, China.

出版信息

Materials (Basel). 2025 Jan 23;18(3):512. doi: 10.3390/ma18030512.

Abstract

Piezoelectric materials (PZTs) enjoy extensive applications in the field of electromechanical sensors due to their sensitive response to external electric fields. The limited piezoelectric response for single-layer piezoceramic pellets drives the use of multilayered technology to increase the electric displacement of a single piezo device. As is well known, Ag is commonly used as a metal for electrodes in devices based on traditional PZTs, which always densify at a high temperature above 1100 °C, resulting in Ag migration. Here, a high-performance samarium-ion-doped SmPb(ZrTi)O ceramic was selected as parent materials to develop a new Ag-cofired ceramic matrix with a sintering temperature of 920 °C by glass flux. The ceramic composition with 2.0 wt% glass addition exhibits the excellent performance of piezoelectric ~492 pC/N, planar electromechanical coupling coefficient ~50.1%, mechanical quality factor ~68.71, and Curie temperature ~356 °C, respectively. The cyclic stability of was measured below 6.6% at 30 kV/cm, which indicates that the piezoceramic has good temperature stability and fatigue resistance. Therefore, this study provides a novel high-performance piezoelectric system to meet the cofired requirement for multilayered piezoelectric devices.

摘要

压电材料(PZT)因其对外部电场的敏感响应而在机电传感器领域有着广泛应用。单层压电陶瓷片有限的压电响应促使人们采用多层技术来提高单个压电装置的电位移。众所周知,在基于传统PZT的器件中,Ag通常用作电极金属,这些器件总是在1100℃以上的高温下致密化,导致Ag迁移。在此,选择一种高性能的钐离子掺杂的SmPb(ZrTi)O陶瓷作为母体材料,通过玻璃助熔剂开发出一种烧结温度为920℃的新型Ag共烧陶瓷基体。添加2.0 wt%玻璃的陶瓷组合物分别表现出优异的压电性能492 pC/N、平面机电耦合系数50.1%、机械品质因数68.71和居里温度356℃。在30 kV/cm下测量的循环稳定性低于6.6%,这表明该压电陶瓷具有良好的温度稳定性和抗疲劳性。因此,本研究提供了一种新型高性能压电系统,以满足多层压电器件的共烧要求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba2f/11818533/784ca1b6d34b/materials-18-00512-g001.jpg

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