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The Effect of Yttrium and Sulfur on the Oxidation of FeCrAl

机译:钇和硫对FeCrAl氧化的影响

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In order to examine the influence of Y and S on the oxidation process of FeCrAl, isothermal oxidation experiments with a set of 4 high purity FeCrAl alloys with well defined Y and/or S content were carried out between 1100deg C and 1400deg C. The experiments showed convolution, void formation and spallation for the oxide on the undoped FeCrAl with 45 ppm S content, whereas the undoped alloy ith 2 ppm S, as well as the Ydoped alloys, exhibited a flat and adherent scale. TEM studies revealed an equiaxed oxide grain structure for the undoped materials and a columnar structure for the Y doped FeCrAl. This indicates a change in the oxide growth process due to the presence of Y. The segregation of Y to the oxide grain boundaries and the metal/oxide interface could be detected with STEM-EDS. The characterization of the microstructure was combined with mechanical stress measurements of the oxide using optical fluorescence spectroscopy.
机译:为了检查Y和S对FeCrAl氧化过程的影响,在1100°C至1400°C之间用一组4种Y和/或S含量明确定义的高纯度FeCrAl合金进行了等温氧化实验。在未掺杂的FeCrAl上,S含量为45 ppm时,氧化物表现出卷积,空隙形成和散裂,而2 ppm S的未掺杂合金以及Y掺杂的合金表现出平坦且附着的鳞片。 TEM研究表明,未掺杂材料的等轴氧化物晶粒结构和Y掺杂FeCrAl的柱状结构。这表明由于存在Y而导致氧化物生长过程发生了变化。可以通过STEM-EDS检测到Y在氧化物晶界和金属/氧化物界面上的偏析。显微结构的表征与使用光学荧光光谱法对氧化物的机械应力测量相结合。

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