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Formation and growth morphology of nodules in the high-temperature oxidation of Fe―Mn―Al―C alloy

机译:Fe―Mn―Al―C合金高温氧化过程中结核的形成与生长形态

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The oxidation of a dual-phase Fe―Mn―Al―C alloy has been studied at 750 ℃ in dry air. A typical nodule with two distinct layers was formed after oxidation for 24h. The external scale consists of mainly Mn_2O_3 and Mn3O4, while alumina oxide is observed in the ferrite layer of the inner nodule. As the duration of oxidation increased, a needle-like A1N is revealed beneath the nodule. The ferrite layer is formed due to the selective oxidation of manganese, and the inward diffusion of nitrogen through internal voids is responsible for the formation of A1N precipitates beneath the oxide scale. Qualitative and quantitative electron microscopic and transmission electron microscopic (TEM) techniques are employed to investigate the morphological development and elemental distribution in the alloy. The mechanism of the formation and growth of the nodule is explored.
机译:研究了在干燥空气中于750℃下双相Fe-Mn-Al-C合金的氧化过程。氧化24h后形成具有两个不同层的典型结节。外部水垢主要由Mn_2O_3和Mn3O4组成,而在内部结节的铁素体层中观察到氧化铝。随着氧化持续时间的增加,结节下方露出了针状的AlN。铁氧体层是由于锰的选择性氧化而形成的,氮通过内部空隙的向内扩散是导致在氧化皮下形成AlN沉淀的原因。定性和定量电子显微镜以及透射电子显微镜(TEM)技术用于研究合金中的形态发展和元素分布。探索了结节形成和生长的机制。

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