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Control of solid oxide fuel cells damage using infrared thermography

机译:使用红外热像仪控制固体氧化物燃料电池的损坏

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摘要

The high operating temperature of solid oxide fuel cells, can cause serious damage such as cathode delamination or cracking of the SOFC layers, which cause a decrease in the performance of the latter, a rigorous nondestructive inspection is necessary, in particular that their prices are high. In this paper we have treated thermal control by pulsed infrared thermography of the solid oxide fuel cells electrodes, using 3D finite elements method. The thermal images obtained were processed, and a quantitative analysis was performed to obtain information concerning cracks in electrolyte supported and anode supported planar cells, and cathode delamination in electrolyte supported and cathode supported cells. The results obtained as the temperature distribution in the fuel cells, with and without defects, shows the difference between the flawed and the unflawed cells. The thermal response informs us about the presence of the defects, and in addition it informed us about their depths. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:固体氧化物燃料电池的高工作温度可能会导致严重的损坏,例如阴极分层或SOFC层破裂,从而导致后者的性能下降,因此必须进行严格的无损检查,尤其是价格昂贵。在本文中,我们使用3D有限元方法通过脉冲红外热成像对固体氧化物燃料电池电极进行了热控制。处理获得的热图像,并进行定量分析以获得关于电解质支撑和阳极支撑的平面电池中的裂纹以及电解质支撑和阴极支撑的电池中的阴极分层的信息。作为有缺陷和无缺陷的燃料电池中的温度分布而获得的结果显示了有缺陷的电池和无缺陷的电池之间的差异。热响应会告知我们缺陷的存在,此外还会告知我们缺陷的深度。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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