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Fabrication of dense CaZr0.90In0.10O3-δ ceramics from the fine powders prepared by an optimized solid-state reaction method

机译:通过优化的固态反应方法制备的细粉制备致密的CaZr0.90​​.0.10.103-δ陶瓷

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The phase formation mechanism and kinetics of CaZrO3 from ZrO2 and CaCO3 were investigated by XRD, TEM and thermal quenching method. The results demonstrated that it was CaO decomposed from CaCO3 that reacted with ZrO2, and the size of the final particles was mainly determined by the morphology of the starting ZrO2 particles. Well distributed CaZr0.90In0.10O3-δ(about 130 ran) powders were synthesized at 1000°C. This temperature was comparable to that of the co-precipitation method and 50°C lower than that of the molten salts synthesis process. The relative density of the ceramics fabricated from the powders reached 98% TD at 1400°C, which was 200°C lower than that of the traditional sintering temperature. The ceramics showed satisfactory proton conductivity at moderate temperatures.
机译:通过XRD,TEM和热淬火法研究了来自ZrO2和CaCO3的Cazro3的相形成机制和动力学。结果表明,从与ZrO2反应的CaCO 3分解的CaO,并且最终颗粒的尺寸主要由起始ZrO2颗粒的形态决定。分布良好的Cazr0.90​​in0.10O3-δ(约130 ran)粉末在1000℃下合成。该温度与共沉淀法的温度相当,50℃低于熔融盐合成方法的50℃。由粉末制造的陶瓷的相对密度在1400℃下达到98%Td,比传统烧结温度低200℃。陶瓷在中等温度下显示出令人满意的质子电导率。

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