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Properties of Spinel Protective Coatings Prepared Using Wet Powder Spraying for SOFC Interconnects

机译:SOFC互连件用湿粉末喷涂制备的尖晶石防护涂层的性能

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A wet powder spraying (WPS) method was applied to prepare protective layers of manganese cobalt spinel oxide (MCO) on commercial stainless steels of solid oxide fuel cell (SOFC) interconnects. Densification of the MCO layer was dependent on the thermal treatment condition in which a reactive sintering increased the coating density. An applied MnO sublayer reacted with the MCO layer during sintering, and resulted in secondary phase formation and limited densification. Both MCO and MnO-MCO coatings were adhering to the steel substrates and suppressed chromium diffusion during oxidation. The area specific resistance (ASR) of a test specimen including the MCO layer was 0.03 Ωcm~2 at 700°C after 800 h, lower than with MnO-MCO, which is believed to be due to the denser protective layer of the single phase and more limited chromia scale growth Thus, an effective protective layer of metallic interconnects could be prepared using a simple wet coating method after optimization of the sintering conditions.
机译:应用湿式粉末喷涂(WPS)方法在商用固体氧化物燃料电池(SOFC)互连的不锈钢上制备锰酸锰尖晶石氧化物(MCO)的保护层。 MCO层的致密化取决于热处理条件,其中反应性烧结增加了涂层密度。烧结过程中,施加的MnO子层与MCO层发生反应,导致形成第二相和有限的致密化。 MCO和MnO-MCO涂层均粘附在钢基材上,并抑制了氧化过程中铬的扩散。包含MCO层的试样在800 h后在700°C时的面积比电阻(ASR)为0.03Ωcm〜2,低于MnO-MCO,这被认为是由于单相保护层更致密因此,在优化烧结条件之后,可以使用简单的湿涂法制备有效的金属互连保护层。

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