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The Structure and Properties of Plasma Sprayed Iron Oxide Doped Manganese Cobalt Oxide Spinel Coatings for SOFC Metallic Interconnectors

机译:用于SOFC金属互连器的等离子喷涂氧化铁掺杂氧化锰钴尖晶石涂层的结构和性能

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Manganese cobalt oxide spinel doped with Fe_2O_3 was studied as a protective coating on ferritlc stainless steel interconnects. Chromium alloying causes problems at high operation temperatures in such oxidizing conditions where chromium compounds evaporate and poison the cathode active area, causing the degradation of the solid oxide fuel cell. In order to prevent chromium evaporation, these interconnectors need a protective coating to block the chromium evaporation and to maintain an adequate electrical conductivity. Thermal spraying is regarded as a promising way to produce dense and protective layers. In the present work, the ceramic Mn-Co-Fe oxide spinel coatings were produced by using the atmospheric plasma spray process. Coatings with low thickness and low amount of porosity were produced by optimizing deposition conditions. The original spinel structure decomposed because of the fast transformation of solid-liquid-solid states but was partially restored by using post-annealing treatment
机译:研究了掺杂Fe_2O_3的氧化锰锰尖晶石作为铁素体不锈钢互连件上的保护涂层。铬合金化会在这种氧化条件下在高工作温度下产生问题,其中铬化合物会蒸发并使阴极活性区中毒,从而导致固体氧化物燃料电池退化。为了防止铬蒸发,这些互连器需要保护涂层以阻止铬蒸发并保持足够的电导率。热喷涂被认为是生产致密和保护层的一种有前途的方法。在目前的工作中,陶瓷Mn-Co-Fe氧化物尖晶石涂层是采用常压等离子体喷涂工艺生产的。通过优化沉积条件,可以生产出厚度低,孔隙率低的涂层。最初的尖晶石结构由于固液固相的快速转变而分解,但通过后退火处理得以部分恢复

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