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Molybdenum Oxide and Nickel Nitrate as Cooperative Sintering Aids for Yttria-Stabilized Zirconia

机译:氧化钼和硝酸镍作为氧化钇稳定的氧化锆的协同烧结助剂

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摘要

The entirely accidental observation of increased sintering performance of nickel-infiltrated yttria-stabilized zirconia (8YSZ) in a molybdenum and oxygen rich atmosphere was explored. Molybdenum and nickel were found to be synergistic sintering aids for 8YSZ. However, sintering had to take place in an atmosphere of flowing oxygen. Samples sintered in air consistently burst. The sintering performance, microstructure, and crystal structure of 8YSZ with additions of both Mo and Ni together are compared to the sintering performance, microstructure, and crystal structure of pure 8YSZ, 8YSZ with only Ni added as a sintering aid, and 8YSZ with only Mo added as a sintering aid. Enhanced densification and grain growth is observed in the Mo–Ni 8YSZ samples when compared to all other sintering samples. Order of magnitude sintering rate increases are observed in the Mo–Ni 8YSZ over that of pure 8YSZ. With a maximum sintering temperature of 1200 °C and a one-hour dwell, sintered densities of 85% theoretical density (5.02 g⁄cm ) are achieved with the Mo–Ni samples: a 57% increase in density over pure 8YSZ sintered with the same sintering profile. EIS results suggest conductivity may not be negatively impacted by the use of these two sintering aids at temperatures above 750 °C. Finally, the spontaneous generation of nickel-molybdenum nano-rods was observed on the 5, and 10 mol.% Mo–Ni infiltrated 8YSZ samples after being left under vacuum in a scanning electron microscope chamber, suggesting evaporation of a possible nickel–molybdenum compound from the sample fracture surfaces.
机译:探索了完全偶然的观察结果,发现在钼和氧丰富的气氛中,镍渗透的氧化钇稳定的氧化锆(8YSZ)的烧结性能提高了。发现钼和镍是8YSZ的协同烧结助剂。但是,烧结必须在流动的氧气气氛中进行。在空气中烧结的样品始终会破裂。比较了同时添加Mo和Ni的8YSZ的烧结性能,微结构和晶体结构与纯8YSZ,仅添加Ni作为烧结助剂的8YSZ和仅含Mo的8YSZ的烧结性能,微结构和晶体结构的比较添加作为烧结助剂。与所有其他烧结样品相比,在Mo–Ni 8YSZ样品中观察到增强的致密化和晶粒长大。 Mo-Ni 8YSZ的烧结速率比纯8YSZ的数量级增加。 Mo-Ni样品的最高烧结温度为1200°C,停留时间为一小时,烧结密度达到理论密度的85%(5.02 g⁄cm):与纯8YSZ烧结相比,密度提高了57%。相同的烧结轮廓。 EIS结果表明,在高于750°C的温度下使用这两种烧结助剂可能不会对导电率产生负面影响。最后,在5 mol%和10 mol。%Mo-Ni渗透的8YSZ样品上放置在扫描电子显微镜室中真空后,观察到自发生成镍钼纳米棒,这表明可能的镍钼化合物蒸发了从样品断裂表面开始。

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