- Effects of the Mixing Method and Sintering Temperature on the Characteristics of PZNN-PZT Piezoelectric Ceramic Materials
-
So Won Kim, Yong Jeong Jeong, Hee Chul Lee
-
J Korean Powder Metall Inst. 2018;25(6):487-493. Published online December 1, 2018
-
DOI: https://doi.org/10.4150/KPMI.2018.25.6.487
-
-
209
View
-
1
Download
-
5
Citations
-
Abstract
PDF
The impact of different mixing methods and sintering temperatures on the microstructure and piezoelectric properties of PZNN-PZT ceramics is investigated. To improve the sinterability and piezoelectric properties of these ceramics, the composition of 0.13Pb((Zn0.8Ni0.2)1/3Nb2/3)O3-0.87Pb(Zr0.5Ti0.5)O3 (PZNN-PZT) containing a Pb-based relaxor component is selected. Two methods are used to create the powder for the PZNN-PZT ceramics. The first involves blending all source powders at once, followed by calcination. The second involves the preferential creation of columbite as a precursor, by reacting NiO with Nb2O5 powder. Subsequently, PZNN-PZT powder can be prepared by mixing the columbite powder, PbO, and other components, followed by an additional calcination step. All the PZNNPZT powder samples in this study show a nearly-pure perovskite phase. High-density PZNN-PZT ceramics can be fabricated using powders prepared by a two-step calcination process, with the addition of 0.3 wt% MnO2 at even relatively low sintering temperatures from 800°C to 1000°C. The grain size of the ceramics at sintering temperatures above 900°C is increased to approximately 3 μm. The optimized PZNN-PZT piezoelectric ceramics show a piezoelectric constant (d33) of 360 pC/N, an electromechanical coupling factor (kp) of 0.61, and a quality factor (Qm) of 275.
-
Citations
Citations to this article as recorded by 
- An Analysis of Edge Chipping in LiTaO3 Wafer Grinding Using a Scratch Test and FEA Simulation
Haeseong Hwang, Seungho Han, Hyunseop Lee Lubricants.2023; 11(7): 297. CrossRef - A generalized rule for phase transition generated by additives in piezoelectric ceramics
Jae-Min Cha, Young-Kook Moon, Jung-hwan Kim, Hyun-Ae Cha, Jong-Jin Choi, Byung-Dong Hahn, Seog-Young Yoon, Cheol-Woo Ahn Materials Today Communications.2023; 37: 107290. CrossRef - Low-Temperature Sintering Properties of Bi2O3 Doped PZT-5H Piezoelectric Ceramics
Wanzi Mao, Qing Xu, Duanping Huang, Huajun Sun, Feng Zhang, Xiaobin Xie Journal of Electronic Materials.2023; 52(5): 3334. CrossRef - Effect of LiBiO2 on low-temperature sintering of PZT-PZNN ceramics
Sung Cheul Hong, Shi Yeon Kim, Dong-Hun Yeo, Hyo-Soon Shin, Zee Hoon Park, Sahn Nahm Journal of the Korean Ceramic Society.2022; 59(5): 638. CrossRef - Two-Stage De-binding for Cu Electrode Application to PZT-PZNN Multilayer Actuator
Sung Cheul Hong, Zeehoon Park, Dong-Hun Yeo, Hyo-Soon Shin, Sahn Nahm Transactions on Electrical and Electronic Materials.2022; 23(4): 348. CrossRef
|