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首页> 外文期刊>Journal of Materials Science >Abnormal grain growth and liquid-phase sintering in Sr0.6BaNb2O6 (SBN40) ceramics
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Abnormal grain growth and liquid-phase sintering in Sr0.6BaNb2O6 (SBN40) ceramics

机译:Sr0.6BaNb2O6(SBN40)陶瓷的异常晶粒长大和液相烧结

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Ceramics of Sr0.6Ba0.4Nb2O6 (SBN40) were prepared by the conventional mixed oxide route. Sintering at temperatures greater than or equal to 1260 degrees C led to rapid, non-uniform grain growth and a duplex microstructure. Presintering at 1250 degrees C followed by higher temperature sintering (1350-1450 degrees C) controlled grain growth. Rapid cooling from 1450 degrees C froze-in second phases at grain boundaries. Scanning electron microscopy and transmission electron microscopy showed that the resulting grain-boundary phases were Nb2O5-rich and BaO-deficient, having low liquid-formation temperatures. In contrast, SBN40 ceramics prepared with excess BaO and a deficiency of Nb2O5 showed no enhancement of grain growth at the highest temperature. Sintering behaviour and microstructural development provide evidence for the existence of a liquid phase which assists abnormal grain growth. The effect of presintering in controlling grain growth is discussed, and a mechanism for abnormal grain growth in Sr0.6Ba0.4Nb2O6 (SBN40) ceramics is proposed. (C) 1998 Chapman & Hall. [References: 19]
机译:Sr0.6Ba0.4Nb2O6(SBN40)陶瓷是通过常规混合氧化物工艺制备的。在大于或等于1260摄氏度的温度下烧结会导致快速,不均匀的晶粒生长和双相组织。在1250摄氏度下进行预烧结,然后进行较高温度的烧结(1350-1450摄氏度),控制晶粒的生长。从1450摄氏度迅速冷却到晶界处的第二相冻结。扫描电子显微镜和透射电子显微镜显示,所得的晶界相富含Nb 2 O 5且BaO缺乏,具有低的液相形成温度。相反,用过量的BaO和Nb2O5不足制备的SBN40陶瓷在最高温度下未显示出晶粒生长的增强。烧结行为和微结构发展为液相的存在提供了证据,该液相有助于异常晶粒的生长。讨论了预烧结在控制晶粒长大中的作用,并提出了Sr0.6Ba0.4Nb2O6(SBN40)陶瓷中异常晶粒长大的机理。 (C)1998查普曼和霍尔。 [参考:19]

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