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Influence of preoxidation and annealing treatments on the isothermal oxidation in air at 1173 K of cerium-implanted EN-1.4301 stainless steel

机译:预氧化和退火处理对植入铈的EN-1.4301不锈钢在1173 K下空气中等温氧化的影响

摘要

Improvement of the high temperature oxidation behavior of conventional EN1.4301 (AISI type 304) stainless steel was achieved by implanting cerium ions. Implantation was performed in samples with two different surface treatments: commercial 2B mill finishing and preoxidation in synthetic air. One set of samples was annealed after implantation in order to recover the damage induced in the crystalline structure. Results show that the implantation of Ce greatly improves the oxidation resistance at 1173 K of the EN-1.4301 grade stainless steels and that the annealing treatment after the implantation is beneficial during the subsequent oxidation. Experiments confirm the presence of spinel-type compounds and Cr2O3 and Fe-Cr mixed oxides with high Cr content in the scale, and martensite being the dominating metallic phase. Chromium depletion in the near-surface layers is also described. Results are compared to previously published data on surface modification using La and Ce by pyrolysis of aerosols.
机译:通过注入铈离子可改善常规EN1.4301(AISI 304型)不锈钢的高温氧化性能。植入是在具有两种不同表面处理的样品中进行的:商用2B轧机精加工和合成空气中的预氧化。植入后将一组样品退火,以恢复在晶体结构中引起的损伤。结果表明,Ce的注入大大提高了EN-1.4301级不锈钢在1173 K时的抗氧化性,并且注入后的退火处理在后续的氧化过程中是有益的。实验证实存在尖晶石型化合物以及鳞片中具有高Cr含量的Cr2O3和Fe-Cr混合氧化物,并且马氏体是主要的金属相。还描述了近表面层中的铬消耗。将结果与先前发表的有关通过气溶胶热解使用La和Ce进行表面改性的数据进行比较。

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