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Synthesis and Thermal Properties of Nano- and Macro-Crystalline Ceramic Materials Based on Bi5FeTi3O15

机译:基于BI5FETI3O15的纳米和宏晶陶瓷材料的合成与热性能

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摘要

The influence of synthesis conditions on the development, thermal behavior, and sintering characteristics was investigated for nano- and macro-crystalline Bi5FeTi3O15-based ceramic materials with a perovskite-like four-layered Aurivillius phase structure. It was shown that the start of grains sintering corresponds with the start of surface phase melting, given that the surface phase composition can be controlled by changing the chemical composition of the initial mixture. The temperatures of crystallization, phase transition, decomposition, sintering activation of the produced materials were determined along with the thermal coefficient of their linear expansion.
机译:用钙钛矿状四层Aurivillius相位结构研究了合成条件对显影,热行为和烧结特性的影响,纳米和宏结晶Bi5Feti3O15型陶瓷材料。 结果表明,烧结的开始与表面相熔化的开始对应,因为可以通过改变初始混合物的化学成分来控制表面相结合物。 结晶,相转变,分解,产生的材料的烧结活化的温度随着它们的线性膨胀的热系数确定。

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