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首页> 外文期刊>Journal of Materials Science >Dense spinel MnCo2O4 film coating by aerosol deposition on ferritic steel alloy for protection of chromic evaporation and low-conductivity scale formation
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Dense spinel MnCo2O4 film coating by aerosol deposition on ferritic steel alloy for protection of chromic evaporation and low-conductivity scale formation

机译:在铁素体合金上气溶胶沉积致密尖晶石MnCo 2 O 4 薄膜,以保护铬的蒸发和低电导率水垢的形成

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摘要

Conducting ceramic layers with a spinel structure of MnCo2O4 and a thickness of ~3 μm were deposited on ferritic stainless steel (SS) by aerosol deposition (AD), for use as an oxidation-resistant coating layer on the metallic interconnects of a solid oxide fuel cell (SOFC). The microstructural changes in the interface between the MnCo2O4 and SS were analyzed, as were the subsequent electrical conductivity changes at an SOFC operating temperature of 800 °C in air. The coated spinel layers were dense without pores or cracks, and maintained good adhesion even after oxidation at 800 °C for 1,000 h in air atmosphere. Close observation of the interface between the coated spinel oxide and SS substrate indicated the presence of ~1-μm thick, Cr-rich scale formation; however no MnCrCoO4 or MnCr2O4 spinel phase was detected. The area specific resistance (ASR) of the MnCo2O4-coated alloy after heat treatment at 800 °C for 1,000 h was 13.4 mΩ cm2.
机译:通过气溶胶沉积(AD)将具有MnCo 2 O 4 的尖晶石结构且厚度约为3μm的导电陶瓷层沉积在铁素体不锈钢(SS)上,用于用作固体氧化物燃料电池(SOFC)的金属互连上的抗氧化涂层。分析了MnCo 2 O 4 和SS之间的界面的微观结构变化,以及随后在空气中800°C的SOFC工作温度下的电导率变化。涂覆的尖晶石层致密无孔或裂纹,即使在空气中于800°C氧化1000小时后仍保持良好的附着力。对涂层的尖晶石氧化物和SS衬底之间的界面进行仔细观察,发现存在〜1-μm厚,富Cr的水垢。但未检测到MnCrCoO 4 或MnCr 2 O 4 尖晶石相。 MnCo 2 O 4 涂层合金在800°C热处理1000 h后的比电阻(ASR)为13.4mΩcm 2

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