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Vacuum Plasma Spraying of Thin-Film Planar Solid Oxide Fuel Cells (SOFC) -Development Status at DLR Stuttgart

机译:在DLR斯图加特的真空等离子喷涂薄膜平面固体氧化物燃料电池(SOFC)的发展状态

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In the SOFC concept developed at DLR Stuttgart, thin-film cells are deposited onto a porous metallic substrate by a multistep vacuum plasma spray process (VPS). The advantages of the metallic substrate supported cells are their high mechanical strength and the ability of rapid thermal cycling. Low internal resistances enable the reduction of the operating temperature to 700-800 °C, the increase of the long-term stability and thus the reduction of the material costs. SOFCs containing different materials, e.g. yttria- and scandia-stabilised ZrO_2, were deposited onto different porous metallic substrates. The VPS process was optimised in order to scale up the cells to a size of 10 cm x 10 cm. The paper focuses on the electrochemical characterisation of the corresponding short-stacks (1-cell in metallic housing) and 2-cell stacks by current/voltage measurements, by impedance spectroscopy and by evaluation of their behaviour during thermal cycling. The influence of the cell supporting substrates and the operating conditions, e.g. gas composition and fuel utilisation, is outlined. This enables to determine the individual losses and to further improve the cell performance in the SOFC stacks.
机译:在DLR斯图加特在DLR斯图加特的SOFC概念中,通过多步真空等离子体喷射工艺(VPS)沉积薄膜电池在多孔金属基板上。金属基板支撑电池的优点是它们的高机械强度和快速热循环的能力。低内部电阻使工作温度降低至700-800°C,增加了长期稳定性,从而降低了材料成本。含有不同材料的SOFC,例如: yttra-and Scandia稳定的ZrO_2沉积在不同的多孔金属底物上。优化VPS过程以使细胞扩展到10cm×10cm的尺寸。本文通过电流/电压测量,通过阻抗光谱和在热循环期间评估它们的行为来侧重于相应的短堆叠(金属壳体中)和2细胞堆的电化学表征。电池支撑基板的影响和操作条件,例如操作条件。概述了气体成分和燃料利用。这使得能够确定各个损失并进一步提高SOFC堆栈中的单元性能。

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