微波烧结BNT-ST陶瓷的介电和压电性能

이상훈, Seong H. Kim, Farrukh Erkinov, H. Nguyen, T. Duong, Hyoung‒Su Han, Lee Jae Shin
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引用次数: 0

摘要

研究了无铅0.74(Bi1/2Na1/2)TiO3-0.26SrTiO3 (BNST26)压电陶瓷的微结构和压电性能。为了进行比较,还使用常规炉烧结(CFS)制备了样品。在1100℃微波烧结5 min和1175℃CFS烧结2 h下,样品的平均晶粒尺寸分别为2.4 μm和3.2 μm。为了量化烧结条件下微观组织和电学性能的变化,评估了极化滞后、双极和单极应变曲线以及介电常数的温度依赖性。结果表明,Pmax(最大极化)、Pr(剩余极化)和Smax(最大应变)值随平均晶粒尺寸的增大而增大。综上所述,与传统的CFS方法相比,MWS方法可以在相对较短的时间内制备出性能优越的无铅陶瓷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dielectric and Piezoelectric Properties of Microwave Sintered BNT-ST Ceramics
This study investigated the microstructure and piezoelectric properties of lead-free 0.74(Bi1/2Na1/2)TiO3-0.26SrTiO3 (BNST26) piezoelectric ceramics sintered using a microwave furnace. For comparison, specimens were also prepared using a conventional furnace sintering (CFS). Average grain sizes of 2.4 μm and 3.2 μm were obtained in the sample sintered at 1,100°C for 5 min using microwave sintering (MWS) and at 1,175°C for 2 h using CFS, respectively. To quantify the changes in the microstructures and electrical properties according to the sintering conditions, the polarization hysteresis, bipolar and unipolar strain curves, and temperature dependence of permittivity were evaluated. As a result, it was determined that the Pmax (maximum polarization), Pr (remanent polarization) and Smax (maximum strain) values tend to increase with the average grain size. Based on these results, it is concluded that the MWS method can produce lead-free ceramics with superior performance in a relatively short time compared to the conventional CFS method.
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