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Creep strength of nickel oxide/zirconia composites under different environmental atmospheres

机译:不同环境气氛下氧化镍/氧化锆复合材料的蠕变强度

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摘要

NiO/8YSZ (8 mol% Y _2O _3-stabilized cubic ZrO _2) and NiO/3YTZP (3 mol% Y _2O _3-stabilized tetragonal ZrO _2) composites with different NiO contents have been fabricated by a conventional route of mechanical mixing of NiO and zirconia powders and sintering at 1500 °C for 10 h in air. The resulting microstructures have been characterized by electron microscopy. The composites show a duplex microstructure formed by equiaxed grains of NiO and ZrO _2, without any intermediate phase. Compressive mechanical tests at constant strain rate were carried out at temperatures between 1150 and 1350 °C under different environments: air, inert (Ar) and reducing (5% H _2/95% Ar) atmospheres. The overall creep behavior of the composites is essentially controlled by the zirconia matrix, due to the softness of the NiO phase in the experimental conditions used in this study. The creep strength is not affected by oxygen partial pressure. However, a large decrease in creep resistance under reducing conditions was observed in samples submitted to in situ redox cycling.
机译:通过传统的机械混合NiO的方法,制备了NiO含量不同的NiO / 8YSZ(8 mol%Y _2O _3稳定的立方ZrO _2)和NiO / 3YTZP(3 mol%Y _2O _3稳定的四方ZrO _2)复合材料。和氧化锆粉末,然后在空气中于1500°C烧结10小时。所得的微结构已经通过电子显微镜表征。复合材料显示出由等轴晶状的NiO和ZrO_2形成的双相微观结构,没有任何中间相。在以下环境下,在1150至1350°C的温度下,以恒定应变率进行的压缩机械测试:空气,惰性(Ar)和还原(5%H _2 / 95%Ar)气氛。复合材料的整体蠕变行为基本上受氧化锆基体控制,这是由于在本研究中使用的实验条件下NiO相的柔软性。蠕变强度不受氧分压的影响。然而,在还原条件下,进行原位氧化还原循环的样品中,抗蠕变性大大降低。

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