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首页> 外文期刊>Fuel Processing Technology >Microstructural and high-temperature mechanical characteristics of nickel oxide/zirconia composites for solid oxide fuel cells
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Microstructural and high-temperature mechanical characteristics of nickel oxide/zirconia composites for solid oxide fuel cells

机译:固体氧化物燃料电池用氧化镍/氧化锆复合材料的微观结构和高温力学性能

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摘要

NiO/8YSZ (8 mol% Y2O3-stabilized ZrO2) composites with different NiO contents (10, 20 and 40 mol%) have been fabricated by a conventional route of mechanical mixing of NiO and 8YSZ powders and sintering at 1500°C for 10 h in air. The resulting microstructures have been characterized by electron microscopy. In 10 and 20 mol% NiO/8YSZ, the composite is formed by isolated NiO particles surrounded by zirconia matrix grains; this phase is interconnected in the 40 mol% NiO/8YSZ composite. Mechanical tests at constant strain rate and at constant load were conducted on these materials at temperatures of up to 1350 °C. Different behaviors were found depending on the percolation of the NiO phase. Microstructural observations after deformation are essential to understand the overall mechanical behavior of the composites.
机译:通过常规方法将NiO和8YSZ粉末机械混合并在1500°C烧结10 h的常规方法,制备了具有不同NiO含量(10、20和40 mol%)的NiO / 8YSZ(8 mol%Y2O3稳定的ZrO2)复合材料。在空中。所得的微结构已经通过电子显微镜表征。在10和20 mol%的NiO / 8YSZ中,复合材料是由被氧化锆基体颗粒包围的孤立的NiO颗粒形成的。该相在40摩尔%NiO / 8YSZ复合材料中互连。在高达1350°C的温度下,对这些材料进行了恒定应变率和恒定载荷的机械测试。根据NiO相的渗滤,发现了不同的行为。变形后的微观结构观察对于理解复合材料的整体机械性能至关重要。

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