测定NiAl2O4陶瓷中氧氮相杂质夹杂物对近表层氢饱和时耐高温降解性能的影响

Q1 Environmental Science
Gulnaz Zh Moldabayeva , Artem L. Kozlovskiy
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引用次数: 0

摘要

阳极陶瓷材料在长期高温工作条件下具有保持电化学和导热性能稳定的可能性,其抗降解生长是固体氧化物燃料电池发展的关键方向之一。本文探讨了在NiAl2O4陶瓷的合成过程中,通过添加氮化铝对NiAl2O4陶瓷进行改性的可能性,从而形成氮化氧晶粒形式的夹杂物。人们对这类陶瓷的兴趣是由于它们的结构特点,这使得它们被认为是固体氧化物燃料电池阳极材料领域中有前途的陶瓷类型之一。在评估NiAl2O4陶瓷成分中以氧氮化Al7O3N5相形式的杂质夹杂物对高剂量辐照下损伤层晶体结构变形引起的膨胀的影响时,发现杂质相浓度从2.5 wt %提高到7.0 wt %,与不含杂质夹杂物的NiAl2O4陶瓷相比,抗膨胀性增长了4倍以上。还确定了NiAl2O4陶瓷成分中杂质夹杂物的存在导致热体积膨胀系数的降低,该系数的降低表明陶瓷晶体结构对外部温度影响的稳定性增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determination of the effect of impurity inclusions in the form of oxy-nitride phases in NiAl2O4 ceramics on resistance to high-temperature degradation during hydrogen saturation of near-surface layers
The degradation resistance growth of anode ceramic materials with the possibility of maintaining the stability of electrochemical and thermal conductivity properties under conditions of long-term high-temperature operation is one of the key directions in the development of solid oxide fuel cells. This article examines the possibility of modification of NiAl2O4 ceramics by adding aluminum nitride to them during the synthesis process, which leads to the formation of inclusions in the form of oxy-nitride grains. The interest in this class of ceramics is due to their structural features, which allows to consider them as one of the promising types of ceramics in the field of anode materials for solid oxide fuel cells. During assessment of the influence of impurity inclusions in the form of the oxy-nitride Al7O3N5 phase in the composition of NiAl2O4 ceramics on the deformation-induced swelling of the crystal structure of the damaged layer under high-dose irradiation, it was established that an elevation in the impurity phase concentration from 2.5 to 7.0 wt % results in swelling resistance growth by more than 4 times compared to NiAl2O4 ceramics without impurity inclusions. It was also determined that the presence of impurity inclusions in the composition of NiAl2O4 ceramics leads to a decrease in the coefficient of thermal volumetric expansion, a reduction of which indicates increased stability of the crystalline structure of ceramics to external temperature influences.
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来源期刊
Case Studies in Chemical and Environmental Engineering
Case Studies in Chemical and Environmental Engineering Engineering-Engineering (miscellaneous)
CiteScore
9.20
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0.00%
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103
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