简介概要

Influence of Composition on Properties of Medium Temperature Sintering (Ba, Sr)TiO3 Series Capacitor Ceramics

来源期刊:JOURNAL OF RARE EARTHS2006年第6期

论文作者:Gao Chunhua Chen Zhigang Huang Xinyou Zhao Chen

Key words:medium temperature sintering; Yb2O3; ceramic capacitor; barium and strontium titanate; ceramics; rare earths;

Abstract: The influence of the composition (Yb2O3, MgO, CeO2, Li2CO3) on the dielectric properties of medium temperature sintering (Ba,Sr)TiO3(BST) series capacitor ceramics was investigated by means of conventional technology process and orthogonal design experiments. The major secondary influencing factors and the influencing tendency of various factor′s levels for the dielectric properties of BST ceramics were obtained. The optimum formula for maximum dielectric constant (ε) and for minimum dielectric loss (tanδ) was obtained under the experimental conditions. The BST ceramics with optimum comprehensive properties was obtained by means of orthogonal design experiments, with the sintering temperature at 1200 ℃, the dielectric constant 5239, the dielectric loss 0.0097, withstand electric voltage over 6 MV·m-1, capacitance temperature changing rate (ΔC/C) -75.67%, and suited for Y5V character. The mechanism of the influence of various components on the dielectric properties of medium temperature sintering BST ceramics was studied, thus providing the basis for preparation of multilayer capacitor ceramics and single-chip capacitor ceramics.

详情信息展示

Influence of Composition on Properties of Medium Temperature Sintering (Ba, Sr)TiO3 Series Capacitor Ceramics

Gao Chunhua1,Chen Zhigang1,Huang Xinyou1,Zhao Chen1

(1.School of Materials Science and Engineering, Jiangsu University, Zhenjiang 212013, China)

Abstract:The influence of the composition (Yb2O3, MgO, CeO2, Li2CO3) on the dielectric properties of medium temperature sintering (Ba,Sr)TiO3(BST) series capacitor ceramics was investigated by means of conventional technology process and orthogonal design experiments. The major secondary influencing factors and the influencing tendency of various factor′s levels for the dielectric properties of BST ceramics were obtained. The optimum formula for maximum dielectric constant (ε) and for minimum dielectric loss (tanδ) was obtained under the experimental conditions. The BST ceramics with optimum comprehensive properties was obtained by means of orthogonal design experiments, with the sintering temperature at 1200 ℃, the dielectric constant 5239, the dielectric loss 0.0097, withstand electric voltage over 6 MV·m-1, capacitance temperature changing rate (ΔC/C) -75.67%, and suited for Y5V character. The mechanism of the influence of various components on the dielectric properties of medium temperature sintering BST ceramics was studied, thus providing the basis for preparation of multilayer capacitor ceramics and single-chip capacitor ceramics.

Key words:medium temperature sintering; Yb2O3; ceramic capacitor; barium and strontium titanate; ceramics; rare earths;

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