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首页> 外文期刊>Journal of materials science >Microstructure And Dielectric Properties Of Cbs Glass-doped Sr_(0.5)ba_(0.5)nb_2o_6 Ceramic System
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Microstructure And Dielectric Properties Of Cbs Glass-doped Sr_(0.5)ba_(0.5)nb_2o_6 Ceramic System

机译:Cbs玻璃掺杂Sr_(0.5)ba_(0.5)nb_2o_6陶瓷体系的微观结构和介电性能

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摘要

40CaO-20B_2O_3-40SiO_2 (abbreviate as CBS) glass-doped Sr_(0.5)Ba_(0.5)Nb_2O_6 (SBN50) ceramics were fabricated by solid-state ceramic route. The effects of CBS glass addition on the firing, the phase formation, the microstructure and dielectric characterization of SBN50 ceramics were investigated. Results show that the density of the samples firstly increase and then slightly decrease with increasing CBS glass content and the highest density achieved has been 97% of the theoretical density for the sample with 2% (mass fraction) CBS glass. The sintering temperature was significantly reduced from 1,350 to 1,100 ℃. X-ray diffraction analysis shows the single phase tungsten bronze type structure is preserved up to 2% CBS glass. However, the samples with more than 5% CBS glass are found to have a secondary phase CaNbO_3. The diffuse character and the dielectric constant at room temperature increase as CBS glass content increases. The dielectric constant of the samples at the Curie temperature (T_c) firstly increases and then decreases with increasing the content of CSB glass. Interestingly, the grain sizes of SBN phase are found to obviously increase with increase in CBS glass doping level.
机译:通过固态陶瓷工艺制备了40CaO-20B_2O_3-40SiO_2(简称CBS)玻璃掺杂Sr_(0.5)Ba_(0.5)Nb_2O_6(SBN50)陶瓷。研究了CBS玻璃的添加对SBN50陶瓷的烧成,相形成,微观结构和介电特性的影响。结果表明,随着CBS玻璃含量的增加,样品的密度先增加,然后略有下降,对于2%(质量分数)的CBS玻璃,样品的最高密度为理论密度的97%。烧结温度从1,350℃明显降低到1,100℃。 X射线衍射分析表明,单相钨青铜型结构保留了高达2%的CBS玻璃。但是,发现含有超过5%CBS玻璃的样品具有第二相CaNbO_3。随CBS玻璃含量的增加,室温下的扩散特性和介电常数也会增加。随着CSB玻璃含量的增加,样品在居里温度(T_c)时的介电常数先增大然后减小。有趣的是,随着CBS玻璃掺杂量的增加,SBN相的晶粒尺寸明显增加。

著录项

  • 来源
    《Journal of materials science》 |2009年第3期|248-252|共5页
  • 作者

    Guo-hua Chen; Bing Qi;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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