TUNG FANG Institutional Repository:Item 987654321/1442
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    題名: The Dielectric Characteristics of the Lead-Free Piezoelectric Ceramics K0.50Na0.50Nb0.95Ta0.05O3
    作者: Cheng, Chien-Min
    Chen, Kai-Huang
    Yang, H.ung-Chi
    Yang, Cheng-Fu
    Tzou, Wen-Cheng
    Kuan, Ming-Chang
    Jong, Fuh-Cheng
    陳開煌
    (東方技術學院電子與資訊系)
    貢獻者: 東方技術學院電子與資訊系
    關鍵詞: Lead-free
    dielectric characteristics
    curie temperature
    日期: 2009-08
    上傳時間: 2012-11-21 10:05:27 (UTC+8)
    出版者: 中國: The Chinese Ceramic society
    摘要: In order to improve the sintering density and dielectric properties of the lead-free K0.5Na0.5NbO3-based ceramics, by the use of solid-state reaction, part of the Nb atoms are substituted by the Ta atoms to form K0.5Na0.5Nb0.95Ta0.05O3 ceramics and the dielectric characteristics are detail investigated in this letter. It is found that the phases of K0.5Na0.5Nb0.95Ta0.05O3 ceramics are pure perovskite with typical orthorhombic symmetry, in addition, no other secondary phases could be certified. For pure K0.5Na0.5Nb0.95Ta0.05O3 ceramics, the shapes of the grains are quadrate and which would due to the increase of the porosity and can not be eliminated easily. Because of the phase stability of pure K0.5Na0.5Nb0.95Ta0.05O3 ceramics is limited to 1140 ºC in this study, higher sintering temperature (over than 1140 ºC) is not suitable for the fabrication of K0.5Na0.5Nb0.95Ta0.05O3 ceramics. Moreover, the Ta atoms in the K0.5Na0.5NbO3-based ceramics could be used to improve the dielectric properties effectively, and it also reveals lower Curie temperature and lower phase transition temperature than the pure K0.5Na0.5NbO3 ceramics. In this letter, for 1120ºC-sintered K0.5Na0.5Nb0.95Ta0.05O3 ceramics, the optimum bulk density is 95.6 % of the theorical density, the Curie temperature is 380 ºC, and the optimum relative dielectric constant is 6107 at 10 kHz.
    關聯: The Sixth China International Conference on High-Performance Ceramics programme Book and Abstracts
    2009 China International Conference on High Performance Ceramic (CICC-6)
    顯示於類別:[電子與資訊系(遊戲動畫系、動畫科)] 會議論文

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