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Electrochemical characterisation of novel γ/γ'-strengthened Co-base superalloys

机译:新型γ/γ'增强钴基高温合金的电化学表征

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Electrochemical behaviour of a new γ/γ'-strengthened Co-base superalloy with the composition Co-9Al-9W-0.12B (in at%) was studied in comparison with pure Co at room temperature in 1 M Na_2SO_4 (pH 5.9) and 0.1 M NaOH (pH 12.8) aqueous solutions. Pure Co and the Co-base superalloy show passive behaviour in both solutions. Impedance spectra measured at the corrosion potential indicate comparable impedance values for the alloy and pure Co in neutral solution, but in alkaline solution the alloy shows a lower corrosion rate. Polarisation curves indicate a limited range of passivity for both materials in neutral solution. In alkaline solution, the alloy and pure Co show similar (albeit not identical) primary and secondary ranges of passivity, as previously described in the literature for pure Co. Furthermore, lower passive current densities are observed for the superalloy in the primary range of passivity. As the superalloy studied in this work is a promising material for high temperature applications, we moreover compared the corrosion behaviour of oxidised alloy surfaces with the bare alloy surface. For this, isothermal oxidation of the γ/γ'-strengthened Co-base superalloy was carried out in air at 800℃ and 900℃ for 24 h and 500 h. Compared to unoxidised Co-Al-W-B alloys and pure Co samples, the high temperature oxide scales provide orders of magnitude higher protection with good barrier properties in a potential range between -1 and +2 V (vs. Ag/AgCl). In general, longer oxidation times and a higher oxidation temperature result in the formation of more protective oxide layers. The protective effect of the high temperature oxide layers is discussed in view of their thickness and chemical composition.
机译:在室温下于1 M Na_2SO_4(pH 5.9)和纯Co中,研究了组成为Co-9Al-9W-0.12B(at%)的新型γ/γ'强化Co基高温合金的电化学行为。 0.1 M NaOH(pH 12.8)水溶液。在这两种解决方案中,Pure Co和Co基高温合金均表现出被动行为。在腐蚀电位下测得的阻抗谱表明,合金和纯Co在中性溶液中具有可比的阻抗值,但在碱性溶液中,合金显示出较低的腐蚀速率。极化曲线表明两种材料在中性溶液中的钝化范围有限。在碱性溶液中,合金和纯Co表现出相似的(虽然不完全相同)主要和次要钝化范围,如先前在纯Co中的文献所述。此外,在主要钝化范围内,超合金的被动电流密度较低。 。由于在这项工作中研究的高温合金是用于高温应用的有前途的材料,因此我们还将氧化合金表面与裸露合金表面的腐蚀行为进行了比较。为此,在空气中分别于800℃和900℃对γ/γ′强化的Co基高温合金进行了等温氧化24小时和500小时。与未氧化的Co-Al-W-B合金和纯Co样品相比,高温氧化皮在-1至+2 V(相对于Ag / AgCl)的电势范围内提供了更高的防护等级和良好的阻隔性能。通常,更长的氧化时间和更高的氧化温度导致形成更多的保护性氧化物层。考虑到它们的厚度和化学组成,讨论了高温氧化物层的保护作用。

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