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Influence of chromium additions on the oxidation resistance of an austenitic Fe-30Mn-5Al alloy

机译:铬添加量对奥氏体Fe-30Mn-5Al合金抗氧化性能的影响

摘要

The oxidation behavior of an austenitic Fe-30Mn-5Al (wt.%) alloy with chromium contents ranging from 3 to 9 wt.% was evaluated in air between 600 and 900°C. The alloy with the highest chromium content showed the best oxidation resistance over the entire temperature range. The high mass gains of chromium-free material result from internal oxidation from the earliest stages of oxidation over the entire temperature range. Chromium additions delay the beginning of internal oxidation for longer times and/or higher temperatures. The beneficial influence of chromium additions is linked to the establishment of a rather continuous, ferrite-rich subsurface. This subsurface, together with the secondary oxygen-getter effect of chromium, favor the rapid establishment of a protective alumina layer. The different processes occurring throughout the oxidation manifest the complexity of the mechanism controlling the oxidation in chromium-free and chromium-containing alloys.
机译:在600至900°C的空气中评估了铬含量为3至9 wt%的奥氏体Fe-30Mn-5Al(wt。%)合金的氧化行为。铬含量最高的合金在整个温度范围内均表现出最佳的抗氧化性。无铬材料的大量质量增加是由于在整个温度范围内从最早的氧化阶段进行的内部氧化所致。铬的添加将内部氧化的开始延迟了更长的时间和/或更高的温度。铬添加的有益影响与建立相当连续的富铁素体的次表面有关。该表面与铬的二次吸氧剂作用一起,有助于快速建立保护性氧化铝层。在整个氧化过程中发生的不同过程表明,控制无铬合金和含铬合金中氧化机制的复杂性。

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