Effect of Doping Nb2O5 on Microstructure and Properties of Piezoelectric Ceramics PSZT

Author:

Peng Ling1,Liu Qi Bin1

Affiliation:

1. Guizhou University

Abstract

o improve the electrical properties of PSZT piezoelectric ceramics, a ceramic powder Pb0.94Sr0.06(Zr0.52Ti0.48)O3 (PSZT) with Nb2O5 was designed. The power was prepared by solid state sintering. The surface structure of sample was characterized using SEM, and the crystal structure of the sample was examined by XRD. The capacitance and dielectric loss of sample was measured by Tonghui Electronics TH2618 capacitor tester. The result of microstructure and electrical properties show that Nb2O5 inhibit crystal growth when the contents of Nb2O5 is less than 0.5.wt%, but excessive Nb2O5 cause pyrochlore phase producing while the contents of Nb2O5 more than 0.5wt.% . The excellent piezoelectric properties are achieved in the ceramics with 0.5wt.% Nb2O5:εr=1504,tanδ=0.0065,d33=336pC/N, kp=0.562.

Publisher

Trans Tech Publications, Ltd.

Reference7 articles.

1. Garg Ajai, Agrrawal D C. Effect of rare earth (Er, Gd, Eu, Nd, and La) and bismuth additives on the mechanical and piezoelectric properties of lead zirconate titanate ceramic[J]Master Sci Eng, 2001, 86: 134-143.

2. Vaslilewa T K, Nadoliisky M M, Toshey S D. Study of PZT ceramics doped with Cr2O3[J]. Phys Station Solid, 1984, 86(a): K109-K111.

3. Zhang R F, Zhang H P, Ma J, Chen Y Z, Zhang T S. Effect of Y and Nb codoping on the microstructure and electrical properties of lead zironate titanate ceramics[J]Solie State Ionics, 2004, 166: 219.

4. Chen Yaobo, Zhang Yangyang, Jiang Shenglin, eg. Effect of cerium-modified on the properties of piezoelectric ceramics[J]Journal of Functional Materials, 2008, 39: 379-384.

5. Shao Yiyue, Dong Yan, Fang Feng, Jiang Jianqing. Study on electrically tunable properties of Sr-doping lead ziroconate titanate(PSZT) thin film[J]. Electronc Component And Materials, 2008, 27: 52-54.

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