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Oxidation resistance of Mo(Si(1)-(x)Al(x))(2) nanocrystalline films and characterization of their oxide scales by electrochemical impedance spectroscopy

机译:mo(si(1) - (x)al(x))(2)纳米晶薄膜的抗氧化性及电化学阻抗谱表征氧化皮

摘要

To explore the influence of Al alloying on the oxidation resistance of MoSi2, four Mo(Si₁-ₓAlₓ)₂ nanocrystalline films, with differing Al contents, were fabricated on Ti–6A1–4V substrates by a doublecathode glow discharge technique and their cyclic oxidation behavior was characterized at 500 °C in air. The oxidation kinetics of the four Mo(Si₁-ₓAlₓ)₂ films was found to obey a subparabolic behavior with respect to the overall exposure, and their oxidation resistance was improved by Al additions. On the other hand, the electrochemical behavior of the oxide scales developed on the four Mo(Si₁-ₓAlₓ)2 nanocrystalline films in a 3.5 wt% NaCl solution was studied using electrochemical-impedance spectroscopy (EIS). The impedance data showed that with increasing oxidation time, the oxide scales transformed from a homogeneous and dense structure to a duplex structure consisting of a porous outer layer and a denser inner layer. The resistance of the oxide scales increased with increasing Al addition, implying an enhanced protective ability of the oxide scales by Al alloying in media containing chlorine ions. The findings represent a step forward in improving the surface integrity of alloy components used in the hot zones of jet engines.
机译:为了探索铝合金对MoSi2的抗氧化性的影响,采用双阴极辉光放电技术在Ti-6A1-4V衬底上制备了4种不同Al含量的Mo(Si₁-ₓAlₓ)2纳米晶膜及其循环氧化行为。在500°C的空气中表征。发现四层Mo(Si + -Al 2)2薄膜的氧化动力学服从整体抛物线的抛物线行为,并且通过添加Al提高了它们的抗氧化性。另一方面,用电化学阻抗谱(EIS)研究了在3.5wt%的NaCl溶液中在四个Mo(Si + -AlAl)2纳米晶体膜上形成的氧化皮的电化学行为。阻抗数据表明,随着氧化时间的增加,氧化皮从均质且致密的结构转变为由多孔外层和致密内层组成的双工结构。氧化皮的电阻随添加的Al的增加而增加,这意味着通过在含氯离子的介质中进行Al合金化,可以提高氧化皮的保护能力。这些发现代表了在改善喷气发动机高温区域中使用的合金部件的表面完整性方面迈出的一步。

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