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首页> 外文期刊>Journal of Materials Engineering and Performance >NiFe2O4 Spinel Protection Coating for High-Temperature Solid Oxide Fuel Cell Interconnect Application
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NiFe2O4 Spinel Protection Coating for High-Temperature Solid Oxide Fuel Cell Interconnect Application

机译:用于高温固体氧化物燃料电池互连应用的NiFe2O4尖晶石保护涂层

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摘要

In the present study, Ni-Fe spinel powder was synthesized via a solid state reaction. In the next step, the electrophoretic deposition (EPD) method was used to apply the NiFe2O4 spinel, as an oxidation-resistant layer, on a commercially available stainless steel (SUS 430) in a potential range of 100 to 300 V. Microscopic studies of the deposited layers showed that crack-free NiFe2O4 films were obtained at 100 V. The coated and uncoated samples were then pre-sintered in air and 5% H-2 bal Ar atmospheres at 900 A degrees C for 3 h followed by cyclic oxidation at 800 A degrees C for 500 h. The investigation of the oxidation resistance of the samples using Energy Dispersive Spectroscopy (EDS) revealed that the NiFe2O4 coating acted as an effective barrier against chromium migration into the coating. The oxidation resistance of 5% H-2 bal Ar pre-sintered sample was enhanced with an oxidation rate constant (K (P)) of 8.9 x 10(-15) g(2) cm(-4) s(-1).
机译:在本研究中,通过固相反应合成了镍铁尖晶石粉末。在下一步中,使用电泳沉积(EPD)方法将NiFe2O4尖晶石作为抗氧化层施加在电压范围为100至300 V的市售不锈钢(SUS 430)上。沉积层显示在100 V下获得无裂纹的NiFe2O4膜。然后将涂覆和未涂覆的样品在空气中和5%H-2 bal Ar气氛中在900 A的温度下预烧结3 h,然后在200℃下循环氧化800摄氏度,持续500小时。使用能量分散光谱法(EDS)对样品的抗氧化性进行的研究表明,NiFe2O4涂层可作为有效的阻挡层,防止铬迁移到涂层中。氧化速率常数(K(P))为8.9 x 10(-15)g(2)cm(-4)s(-1),可提高5%H-2 bal Ar预烧结样品的抗氧化性。

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