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Analysis of Long-Term and Thermal Cycling Tests for a Commercial Solid Oxide Fuel Cell

机译:商业固体氧化物燃料电池的长期和热循环试验分析

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The effects of isothermally long-term and thermal cycling tests on the performance of an ASC type commercial solid oxide fuel cell (SOFC) have been investigated. For the long-term test, the cells were tested over 5000 h in two stages, the first 3000 h and the followed 2000 h, under the different flow rates of hydrogen and air. Regarding the thermal cycling test, 60 cycles in total were also divided into two sections, the temperature ranges of 700 degrees C to 250 degrees C and 700 degrees C to 50 degrees C were applied for the every single cycle of first 30 cycles and the later 30 cycles, respectively. The results of long-term test show that the average degradation rates for the cell in the first 3000 h and the followed 2000 h under different flow rates of fuel and air are 1.16 and 2.64%/ kh, respectively. However, there is only a degradation of 6.6% in voltage for the cell after 60 thermal cycling tests. In addition, it is found that many pores formed in the anode of the cell which caused by the agglomeration of Ni after long-term test. In contrast, the vertical cracks penetrating through the cathode of the cell and the in-plane cracks between the cathode and barrier layer of the cell formed due to the coefficient of thermal expansion (CTE) mismatch after 60 thermal cycling tests.
机译:研究了等温长期试验和热循环试验对ASC型商用固体氧化物燃料电池(SOFC)性能的影响。对于长期试验,在不同的氢气和空气流速下,分两个阶段对电池进行了5000小时的试验,第一阶段为3000小时,第二阶段为2000小时。关于热循环试验,总共60个循环也被分为两个部分,前30个循环和后30个循环的每一个循环分别采用700℃-250℃和700℃-50℃的温度范围。长期试验结果表明,在不同燃料和空气流量下,电池在最初3000小时和随后2000小时的平均降解率分别为1.16%和2.64%/kh。然而,在60次热循环试验后,电池的电压仅下降6.6%。此外,长期试验发现,由于镍的团聚,电池的阳极上形成了许多小孔。相比之下,在60次热循环试验后,由于热膨胀系数(CTE)失配,穿透电池阴极的垂直裂纹以及电池阴极和阻挡层之间的平面内裂纹形成。

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