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A Time Resolved Study of Precoated AISI 441 for SOFC Interconnects Using STEM-EELS - Part Ⅱ

机译:STEM-EELS用于SOFC互连的预涂AISI 441的时间分辨研究-第二部分

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Precoated AISI441 for SOFC interconnectors were investigated by STEM-EELS looking at the diffusion processes in the initial stage of the oxidation. The electron beam physical vapour deposition (EB-PVD) coating contained Ce and Co/Mn-alloy in two layers with a total thickness of 800 nm. The samples were exposed up to 1000 hours at 800°C, and then characterized by STEM-EELS. Multiple linear least squares (MLLS) fitting of reference spectra aids the interpretation of the elemental maps due to overlapping edges. Within 4 min heat treatment the oxidation front has reached the substrate steel and Cr_2O_3 is forming at the stainless steel interface. CeO_2 acts as the barrier line for Cr and is situated between the Cr-containing spinels and the (Co,Mn)-spinel after up to 168 h heat treatment.
机译:通过STEM-EELS研究了用于SOFC互连器的预涂AISI441,研究了氧化初期的扩散过程。电子束物理气相沉积(EB-PVD)涂层包含Ce和Co / Mn合金两层,总厚度为800 nm。将样品在800°C下暴露1000小时,然后通过STEM-EELS进行表征。参考光谱的多重线性最小二乘(MLLS)拟合可帮助解释由于重叠的边而导致的元素图。在热处理的4分钟内,氧化前沿到达了基底钢,并且在不锈钢界面处形成了Cr_2O_3。 CeO_2用作Cr的势垒线,经过长达168小时的热处理后,其位于含Cr的尖晶石和(Co,Mn)-尖晶石之间。

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