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Investigation of Oxide Formation During Short-Term Oxidation of Model NiAl Alloys

机译:模型Nial合金短期氧化过程中氧化物形成的研究

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Two β-NiAl model materials, one stoichiometric (50 at% Al) and one with low Al (39 at%) content were oxidized at 1050°C for 1 h. FIB cross sections were analyzed by SEM and TEM. Phase identification was also performed by XRD. Strong influence of metal grain orientation on the diffusion and oxidation was observed. The morphology of the scale surface was similar in both materials and consisted of regions with needle-like oxide and small smoother pits. TEM and SEM analyses showed that the pits correspond to the contact areas between the oxide and the underlying alloy. Moreover TEM investigations revealed that these contact areas consist of α-Al{sub}2O{sub}3, while the detached oxide scale contains mainly transient-Al{sub}2O{sub}3 phases. The measured oxide thickness was similar in both contact and detached areas. The observed voids at the metal side were much more faceted in the Al-poor material. Possible mechanisms responsible for these observations are discussed.
机译:两个β-nial模型材料,一个化学计量(50at%Al)和具有低Al(39at%)含量的材料,在1050℃下氧化1小时。 通过SEM和TEM分析FIB横截面。 XRD也进行相位鉴定。 观察到金属晶粒取向对扩散和氧化的强烈影响。 两种材料的刻度表面的形态相似,由具有针状氧化物和小更平滑的凹坑的区域组成。 TEM和SEM分析表明,凹坑对应于氧化物和下面合金之间的接触区域。 此外,TEM调查揭示了这些接触区域由α-Al {Sub} 2O {Sub} 3组成,而分离的氧化物尺度主要包含Transient-Al {Sub} 2O {Sub} 3阶段。 在接触和分离区域中测得的氧化物厚度相似。 金属侧的观察到的空隙在Al差的材料中得分得多。 讨论了对这些观察结果负责的可能机制。

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