首页> 外文会议>International Conference and Exhibition in Advanced Materials and Microscopy >The Cross-Sectional Investigation of Oxide Seale FeCr Alloys and Commercial Ferritic Steel Implanted with Lanthanum and Titanium Dopants after Oxidation Test at 900°C
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The Cross-Sectional Investigation of Oxide Seale FeCr Alloys and Commercial Ferritic Steel Implanted with Lanthanum and Titanium Dopants after Oxidation Test at 900°C

机译:氧化镧和钛掺杂剂氧化镧和钛掺杂剂的横截面调查在900℃下氧化试验

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The cross-sectional examinations of oxide scales formed by oxidation on the surface of FeCr alloys and Ferritic Steel that implanted with lanthanum and titanium dopants were observed and investigated. Scanning electron microscopy (SEM) coupled with energy dispersive X-ray spectroscopy (EDS) has been used to study the cross-sectional oxides produced by specimens after oxidation process. X-ray diffraction (XRD) analysis was used to strengthen the analysis of the oxide scale morphology, oxide phases and oxidation products. Cross-sectional observations show the effectiveness of La implantation for improving thinner and stronger scale/substrate interface during oxidation process. The result shows that the thickness of oxide scales formed on the surface of La implanted FeCr alloy and ferritic steel was found less than 3 μm and 300 μm, respectively. The oxide scale formed on the surface of La implanted specimens consisted roughly of Cr2O3 with a small amount of FeO mixture, which indicates that lanthanum implantation can improve the adherence, reduce the growth of the oxide scale as well as reduce the Cr evaporation. On the other side, the oxide scale formed on the surface of FeCr alloys and ferritic steel that implanted with titanium dopant was thicker, indicating that significant increase in oxidation mass gain. It can be noticed that titanium implantation ineffectively promotes Cr rich oxide. At the same time, the amount of Fe increased and diffused outwards, which caused the formation and rapid growth of FeO.
机译:观察并研究了通过植入镧和钛掺杂剂的FECR合金和铁素体钢表面形成的氧化物鳞片的横截面检查。扫描电子显微镜(SEM)与能量分散X射线光谱(EDS)耦合,用于研究氧化过程后试样产生的横截面氧化物。 X射线衍射(XRD)分析用于加强氧化尺度形态,氧化物相和氧化产物的分析。横截面观察显示La植入在氧化过程中改善较薄和更强的刻度/衬底界面的有效性。结果表明,在La植入的FECR合金和铁素体钢表面上形成的氧化物鳞片的厚度分别小于3μm和300μm。在La植入样本的表面上形成的氧化物刻度大致由CR2O3组成,少量FeO混合物,这表明镧注入可以改善粘附性,降低氧化物尺度的生长以及降低Cr蒸发。另一方面,在植入钛掺杂剂的FECR合金和铁素体钢上形成的氧化物刻度较厚,表明氧化质量增益显着增加。可以注意到钛植入无效地促进Cr富含氧化物。与此同时,FE的金额增加并向外扩散,这导致FEO的形成和快速增长。

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