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Investigation of electrical and mechanical properties of 3Y-TZP/Cubic zirconia solid electrolytes with composite structure prepared by near net shape forming

机译:近净形成型复合结构3Y-TZP /立方氧化锆固体电解质的电学和力学性能研究

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摘要

Yttria doped zirconia solid electrolytes with non-equilibrium composite structure were prepared by impregnation of a porous 3Y-TZP matrix with a solution of yttrium nitrate. 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 yttria content of the electrolytes was increased by a multi impregnation process. It was concluded that electrical and mechanical properties of the electrolytes can be adjusted by controlling the amount of doped yttria especially if severe sintering treatments are avoided. Electrolytes with conductivity of 0.08 S/cm at 900 degrees C and fracture strength and fracture toughness of respectively 390 MPa and 2.9 Mpa m(1/2) were obtained.
机译:通过用硝酸钇溶液浸渍多孔3Y-TZP基体,制备了具有非平衡复合结构的掺杂氧化钇的氧化锆固体电解质。用XRD和SEM对组织进行了表征。通过阻抗光谱法研究电性能作为温度的函数。复合样品的双轴弯曲强度和断裂韧性分别采用环对环和维氏显微硬度压痕法进行测量。电解质的氧化钇含量通过多次浸渍过程而增加。结论是,可以通过控制掺杂氧化钇的量来调节电解质的电和机械性能,特别是如果避免严格的烧结处理。获得了在900摄氏度下电导率为0.08 S / cm,断裂强度和断裂韧性分别为390 MPa和2.9 Mpa m(1/2)的电解质。

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