Electrical properties tailoring in Ni-particle-dispersed (Ba0.95Ca0.05)(Ti0.96Zr0.04)O3 composites |
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Authors: | Sui Yang Hailong ZhangSu-Wei Zhang Bo-Ping Zhang |
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Affiliation: | School of Materials Science and Engineering, University of Science and Technology Beijing, Xueyuan Road 30, Beijing 100083, China |
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Abstract: | Ni-particle-dispersed (Ba0.95Ca0.05)(Ti0.96Zr0.04)O3 (BCTZ/Ni) piezoceramic composites were prepared via sintering at 1300 °C in industrial N2 gas. Structural characterizations showed that the metallic Ni was not oxidized and the BCTZ preserved the perovskite structure. The Ni particles were uniformly distributed in the BCTZ ceramic matrix. The relative dielectric constant ?r of the BCTZ/Ni composites increased from 1362 to 3910 with increasing Ni content from 0 to 20 vol.%, which is explained by the Maxwell equation as well as the micro-capacitor model. The percolation theory of insulator–metal transitions is also applied to correlate the rapid increase of dielectric constant with Ni content. The piezoelectric constant d33 gradually decreased from 230 to 50 pC N−1, giving a gradient profile of piezoelectric property. We demonstrate that the electrical properties can be effectively tailored by dispersing metal particles into piezoceramics. |
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Keywords: | A. Ceramics A. Composite materials B. Sintering D. Electrical properties |
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