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Oxidation of Multicomponent Two-Phase Alloys

机译:多组分两相合金的氧化

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The high-temperature corrosion behavior of two-phase alloys presents a number of differences compared to that of single-phase alloys. These differences are mainly a consequence of the limitations that the presence of two phases impose on the diffusion of the alloy components. In this review, it is shown that the exclusive scale formation of the more stable, slow-growing oxide is more difficult on a two-phase alloy, requiring a higher concentration of the more reactive alloy component than for a corresponding single-phase alloy. The main types of corrosion behavior for binary two-phase alloys are also considered, showing that if diffusion in the alloy is slow the scale structure will closely reflect that of the starting material When diffusion in the alloy is not negligible, the scale structure becomes similar to what forms on single-phase alloys. The oxidation of two-phase ternary alloys is shown to be even more complex than the two-phase binary alloys. The principal added complexity compared to the binary alloys is that diffusion in the ternary alloys may also occur in the presence of two metal phases, as a result of an extra degree of freedom in the ternary system. The oxidation behavior of two-phase ternary alloys is discussed in the context of a number of recent experimental results.
机译:与单相合金相比,两相合金的高温腐蚀行为存在许多差异。这些差异主要是由于两相的存在限制了合金成分的扩散所致。在这篇综述中,表明在两相合金上更稳定,生长缓慢的氧化物的排他垢形成更加困难,与相应的单相合金相比,需要更高浓度的更具反应性的合金组分。还考虑了二元两相合金的主要腐蚀行为类型,表明如果合金中的扩散缓慢,则鳞片结构将紧密反映起始材料的鳞片结构。当合金中的扩散不可忽略时,鳞片结构将变得相似在单相合金中形成什么已显示两相三元合金的氧化比两相二元合金的氧化更为复杂。与二元合金相比,主要增加的复杂性在于,由于三元系统额外的自由度,三元合金中的扩散也可能在两种金属相存在下发生。在最近的一些实验结果的背景下,讨论了两相三元合金的氧化行为。

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