JOURNAL ARTICLE

Correlation Between the Microstructure and Electrical Properties in High‐Performance ( Ba 0.85 Ca 0.15 )( Zr 0.1 Ti 0.9 ) O 3 Lead‐Free Piezoelectric Ceramics

Jigong HaoWangfeng BaiWei LiJiwei Zhai

Year: 2012 Journal:   Journal of the American Ceramic Society Vol: 95 (6)Pages: 1998-2006   Publisher: Wiley

Abstract

Using three different sintering methods: spark plasma sintering, two‐step sintering, and normal sintering ( Ba 0.85 Ca 0.15 )( Zr 0.1 Ti 0.9 ) O 3 ( BCZT ) lead‐free piezoelectric ceramics with grain sizes in the range of 0.4–32.2 μm were prepared. The effects of grain size on the electrical properties and temperature stability of BCZT ceramics were systematically investigated. Results showed that reducing grain size shifted both the T c and T T‐R to higher temperatures, and tended to enhance the relaxor behavior. A strong dependence of piezoelectric properties on the grain size was observed, and ~10 μm was a critical point for fabricating high‐performance BCZT ceramics. For samples with grain sizes >10 μm, excellent piezoelectric properties of k p > 0.48, k t > 0.46, d 33 > 470 pC/N and d 33 * > 950 pm/V were obtained. Moreover, no evident relationship between the grain size and temperature stability existed in this material, and all samples exhibited thermal instability below the C urie temperature. However, increasing grain size was helpful for improving the resistance to thermal depoling. The depolarization was assisted by internal mechanical stresses and the movement of 180° and 90° domain walls, which explained the increased resistance to thermal depoling in coarse‐grained samples.

Keywords:
Materials science Grain size Sintering Microstructure Spark plasma sintering Ceramic Thermal stability Grain growth Piezoelectricity Analytical Chemistry (journal) Composite material Mineralogy Chemical engineering Chemistry Chromatography

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Citation History

Topics

Ferroelectric and Piezoelectric Materials
Physical Sciences →  Materials Science →  Materials Chemistry
Microwave Dielectric Ceramics Synthesis
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Acoustic Wave Resonator Technologies
Physical Sciences →  Engineering →  Biomedical Engineering

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