首页> 外文会议>9th International conference on fuel cell science, engineering, and technology 2011 >Manganese-cobalt spinel coatings for SOFC metallic interconnects manufactured by conventional plasma spraying (PS) and suspension plasma spraying (SPS)
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Manganese-cobalt spinel coatings for SOFC metallic interconnects manufactured by conventional plasma spraying (PS) and suspension plasma spraying (SPS)

机译:通过常规等离子喷涂(PS)和悬浮等离子喷涂(SPS)制造的SOFC金属互连用锰钴尖晶石涂层

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Protective coatings are used on ferritic stainless steel interconnects of solid oxide fuel cells (SOFCs) to prevent the oxidation and evaporation of volatile chromium compounds. Oxide scale is formed of chromium oxide (Cr_2O_3) which tends to react with the oxygen and water, forming chromium trioxide (CrO_3) and chromium hydroxides (Cr_2(OH)_2). These compounds will migrate to the triple phase barrier (TPB) of a cathode and reduce back to Cr_2O_3. This reaction pathway is a notable reason for the degradation phenomena of the cell. Plasma spraying (PS) and suspension plasma spraying (SPS) were studied as possible manufacturing processes for thin Mn-Co-(Fe) spinel coatings. Powder for PS was manufactured by using a solid state reaction method from carbonates and oxide to form a MnC0_(1.8)Fe_(0.2)O_4 and powder for SPS by co-precipitation process from nitrates to form a MnCo_2O_4 spinel structure Using PS, coatings with thin and relatively dense structures were obtained. The composition of the coatings was homogeneous although, the decomposition of the spinel structure was noticed. The crystal structures of the PS coatings were partially restored by a separate annealing process. The spray parameters had a strong influence on the coating structure and the composition when SPS was used. The most homogenous coating structure was formed when low energy spraying parameters were used, whereas high energy parameters formed a columnar structure with larger cobalt rich areas. The decomposed spinel structure of the SPS coatings were fully restored by the annealing treatment. In SPS, more process optimization is needed to improve the coating quality and especially denseness.
机译:固态氧化物燃料电池(SOFC)的铁素体不锈钢互连上使用了保护涂层,以防止挥发性铬化合物的氧化和蒸发。氧化皮由易于与氧气和水反应的氧化铬(Cr_2O_3)形成,形成三氧化铬(CrO_3)和氢氧化铬(Cr_2(OH)_2)。这些化合物将迁移到阴极的三相势垒(TPB)并还原回Cr_2O_3。该反应途径是细胞降解现象的显着原因。研究了等离子喷涂(PS)和悬浮等离子喷涂(SPS)作为Mn-Co-(Fe)尖晶石薄涂层的可能制造工艺。 PS的粉末通过固态反应方法由碳酸盐和氧化物形成MnC0_(1.8)Fe_(0.2)O_4,SPS的粉末通过硝酸盐的共沉淀工艺形成MnCo_2O_4尖晶石结构。获得了薄且相对致密的结构。尽管发现了尖晶石结构的分解,但是涂层的组成是均匀的。 PS涂层的晶体结构通过单独的退火过程部分恢复。使用SPS时,喷涂参数对涂层结构和组成有很大影响。当使用低能量喷涂参数时,形成最均匀的涂层结构,而高能量参数形成具有较大钴富集面积的柱状结构。通过退火处理,可完全恢复SPS涂层的分解尖晶石结构。在SPS中,需要更多的过程优化来提高涂层质量,尤其是密度。

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