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首页> 外文期刊>Journal of Materials Science >Evaluation of elastic properties of reduced Ni0-8YSZ anode-supported bi-layer SOFC structures at elevated temperatures in ambient air and reducing environments
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Evaluation of elastic properties of reduced Ni0-8YSZ anode-supported bi-layer SOFC structures at elevated temperatures in ambient air and reducing environments

机译:在环境空气和还原环境中高温下还原Ni0-8YSZ阳极支撑的双层SOFC还原结构的弹性性能评估

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Elastic properties of Ni-8YSZ anode-supported bi-layer SOFC structures were studied at elevated temperatures up to 1,000 °C in both ambient air and H2 environments. The anode samples with desired porosity and microstructure were fabricated by reducing a NiO_8YSZ anode precursor structure in a gas mixture of 5% Н2-95% Ar at 800 °C for selected time periods up to 8h. The development of the essential porous microstructure in forming the Ni-8YSZ cermet phase was analyzed with SEM. It was observed that the room temperature elastic moduli and hardness of the anode samples decrease significantly with increasing fraction of reduced NiO. Since the elastic properties of fully dense Ni, NiO, and 8YSZ are comparable to each other, the decrease in the magnitude in elastic moduli and hardness is evidently due to the colossal increase in porosity in the reduced Ni-8YSZ cermet anodes because of the reduction of NiO to Ni. At elevated temperatures, the Ni-8YSZ anodes show a complex profile of Young's modulus as a function of temperature, which is significantly different from the unreduced NiO-8YSZ samples. When studied in ambient air, the Young's modulus of the Ni-8YSZ samples decrease slowly up to 250 °C, then more rapidly from 250 to 550 °C, and finally it increases monotonically with the increase in temperature. However, in reducing environment, the Young's moduli values decrease continuously throughout the temperature range. Two sets of samples of different thicknesses were studied simultaneously to highlight the effects of the sample thickness on the elastic properties of the anodes.
机译:Ni-8YSZ阳极支撑的双层SOFC结构的弹性性能在环境空气和H2环境中在高达1,000°C的高温下进行了研究。通过在800°C下在5%Н2-95%Ar的气体混合物中还原NiO_8YSZ阳极前驱体结构长达8h的选定时间,可以制备出具有所需孔隙率和微观结构的阳极样品。用SEM分析了形成Ni-8YSZ金属陶瓷相所必需的多孔微观结构的发展。观察到,阳极样品的室温弹性模量和硬度随着还原NiO分数的增加而显着降低。由于完全致密的Ni,NiO和8YSZ的弹性性质彼此可比,因此弹性模量和硬度的降低显然是由于还原引起的还原Ni-8YSZ金属陶瓷阳极孔隙率的整体增加所致从NiO到Ni。在升高的温度下,Ni-8YSZ阳极显示出杨氏模量随温度变化的复杂曲线,这与未还原的NiO-8YSZ样品明显不同。在环境空气中研究时,Ni-8YSZ样品的杨氏模量在250°C以下缓慢下降,然后从250°C到550°C迅速上升,最后随着温度的升高单调增加。然而,在还原环境中,在整个温度范围内,杨氏模量值连续降低。同时研究了两组不同厚度的样品,以突出样品厚度对阳极弹性性能的影响。

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