首页> 外文期刊>Journal of Thermal Spray Technology >High-velocity DC-VPS for diffusion and protecting barrier layers in solid oxide fuel cells (SOFCs)
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High-velocity DC-VPS for diffusion and protecting barrier layers in solid oxide fuel cells (SOFCs)

机译:高速DC-VPS,用于扩散和保护固体氧化物燃料电池(SOFC)中的阻挡层

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摘要

High-temperature fuel cells of the solid oxide fuel cell (SOFC) type as direct converter of chemical into electrical energy show a high potential for reducing considerably the specific energy consumption in different application fields. Of particular interest are advanced lightweight planar cells for electricity supply units in cars and other mobile systems. Such cells, in one new design, consist mainly of metallic parts, for example, of ferrite steels. These cells shall operate in the temperature range of 700 to 800 °C where oxidation and diffusion processes can be of detrimental effect on cell performance for long-term operation. Problems arise in particular by diffusion of chromium species from the interconnect or the cell containment into the electrolyte/cathode interface forming insulating phases and by the mutual diffusion of substrate and anode material, for example, iron and chromium from the ferrite into the anode and nickel from the anode into the ferrite, which in both cases reduces performance and system lifetime. Additional intermediate layers of perovskite-type material, (e.g., doped LaCrO3) applied with high-velocity direct-current vacuum plasma spraying (DC-VPS) can reduce such effects considerably if they are stable and of high electronic conductivity.
机译:固体氧化物燃料电池(SOFC)类型的高温燃料电池作为将化学物质直接转化为电能的直接转化器,具有很大的潜力,可以大大降低不同应用领域中的单位能耗。特别令人感兴趣的是用于汽车和其他移动系统中的供电单元的先进的轻型平面电池。在一种新设计中,这种电池主要由金属零件组成,例如铁氧体钢。这些电池应在700至800°C的温度范围内工作,其中氧化和扩散过程可能会对电池的长期运行产生不利影响。问题尤其是由于铬物种从互连体或电池内含物扩散到形成绝缘相的电解质/阴极界面中,以及基板和阳极材料(例如铁和铬)从铁素体向阳极和镍的相互扩散而引起的。从阳极到铁氧体,这两种情况都会降低性能和系统寿命。如果钙钛矿型材料的其他中间层(例如掺杂的LaCrO3 )稳定且具有高电子传导性,则可以通过高速直流真空等离子喷涂(DC-VPS)来显着降低这种影响。

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