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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Evaluation of Ni-Ni_3Al(5 wt. percent)-Al(3 wt. percent) as an anode electrode for molten carbonate fuel cell. Part 1. Creep and sintering resistance
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Evaluation of Ni-Ni_3Al(5 wt. percent)-Al(3 wt. percent) as an anode electrode for molten carbonate fuel cell. Part 1. Creep and sintering resistance

机译:评价作为熔融碳酸盐燃料电池的阳极电极的Ni-Ni_3Al(5重量%)-Al(3重量%)。第1部分。耐蠕变性和耐烧结性

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To develop an anode electrode of molten carbonate fuel cell (MCFC) that has higher creep and sintering resistance and more stable reactivity than the traditional anode electrode, the five kinds of nickel anode electrodes such as Ni-Al(5), Ni-Cr(10), Ni-Ni_3Al(7), Ni-Ni_3Al(5)-Cr(5) and Ni-Ni_3Al(5)-Al(3) (number in parenthesis means the weight percent of its component) were prepared and their performance were investigated under the same conditions of MCFC operation. In part I of our study, their relative creep and sintering resistance were compared. The Ni-Ni_3Al(5)-Al(3) anode electrode was the most resistant against the sintering and its porosity was kept over 60 percent even at 1000 deg C. And its porosity decrease and thickness shrinkage by creep were the least among the five kinds of anode electrodes. Thus, the effects of the aluminum and nickel-aluminum intermetallic compound (Ni_3Al) addition to nickel as the dispersant strengthening and the solid solution strengthening, agents were confirmed by cdhiparative tests for sintering and creep resistance of five kinds of anode electrodes. Besides these results, we could also know that the creep of anode electrode for MCFC mostly proceeded within 60 h from the start of operation irrespective of the kinds of anode electrodes. And in part II of paper, for more information about the wetting ability and cell performances of these five kinds of anode electrodes, the measurement of wetting ability and unit cell operations were carried out.
机译:为了开发比传统阳极电极具有更高的耐蠕变性和烧结电阻以及更稳定的反应性的熔融碳酸盐燃料电池(MCFC)阳极电极,需要使用五种镍阳极电极,例如Ni-Al(5),Ni-Cr( 10)制备了Ni-Ni_3Al(7),Ni-Ni_3Al(5)-Cr(5)和Ni-Ni_3Al(5)-Al(3)(括号中的数字表示其成分的重量百分比)及其性能在相同的MCFC操作条件下进行了调查。在我们研究的第一部分中,比较了它们的相对蠕变和抗烧结性。 Ni-Ni_3Al(5)-Al(3)阳极电极对烧结的抵抗力最高,即使在1000摄氏度下其孔隙率也保持在60%以上。其孔隙率下降和蠕变引起的厚度收缩率在这五个电极中最少种阳极电极。因此,通过镍和铝的金属间化合物(Ni_3Al)作为分散剂和固溶体的强化剂的效果,通过对5种阳极电极的烧结性和耐蠕变性进行了化学分离试验来确认。除了这些结果,我们还可以知道,MCFC阳极的蠕变主要在运行开始后的60小时内进行,而与阳极电极的种类无关。在论文的第二部分中,为了获得有关这五种阳极电极的润湿能力和电池性能的更多信息,对润湿能力和单位电池操作进行了测量。

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