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Investigation of Electrical and Mechanical Properties of Tetragonal/Cubic Composite Electrolytes Prepared by Impregnation of 8YSZ with Zirconia Solution

机译:通过氧化锆溶液浸渍制备四方/立方复合电解质电气和力学性能的研究

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Zirconia solid electrolytes with nonequilibrium composite structure were prepared by impregnation of a porous 8YSZ matrix with a solution of Zirconia. Microstructures were characterized by XRD and SEM. The electrical properties were studied by impedance spectroscopy as a function of temperature. Biaxial flexural strength and fracture toughness of composite samples were measured by ring on ring and Vickers microhardness indentation methods respectively. The microstructures of the composite electrolytes were composed of cubic grains surrounded by tetragonal second phase grains. It was shown that the electrical and mechanical properties of the prepared electrolyte can be adjusted by controlling the amount of doped zirconia. Increasing the amount of doped zirconia increases the tetragonal phase content which improves fracture toughness and fracture strength. In addition, increasing tetragonal phase content of the composite electrolytes decreases the conductivity at high temperatures while the situation is reversed at low temperatures.
机译:通过用氧化锆溶液浸渍多孔8倍的基质,制备具有非挤出复合结构的氧化锆固体电解质。 XRD和SEM的特征在于微观结构。通过阻抗光谱研究电性能作为温度的函数。通过环和维克斯微硬度缩进方法环和复合样品的双轴弯曲强度和复合样品的断裂韧性。复合电解质的微观结构由四边形第二相晶粒包围的立方颗粒组成。结果表明,可以通过控制掺杂的氧化锆的量来调节制备的电解质的电气和机械性能。增加掺杂氧化锆的量增加了四方相含量,这提高了断裂韧性和断裂强度。此外,增加复合电解质的四边形相含量在高温下降低电导率,而情况在低温下逆转。

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