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Adhesion of thermal barrier coatings systems after long term oxidation: influence of preoxidation temperature and surface state of the bond coat

机译:长期氧化后隔热涂层系统的附着力:预氧化温度和粘结层表面状态的影响

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The aim of this study was to determine the effect of the pre-oxidation temperature and surface state of the bond coat on the microstructure of the oxide scale formed at the first stages of oxidation and on its adhesion after subsequent long-term oxidation (1000h) at 1100 deg C. Short-term isothermal oxidations of 1 h were performed at several temperatures (900 deg C, 1100 deg C) on a Pt-modified NiAl bond coat with two different surface states (as-aluminized or grit-blasted) deposited on a superalloy (AM1). The adherence of the different systems after an additional isothermal ageing treatment in air at 1100 deg C for 1000 h, was compared in order to deduce the initial oxide scale leading to the best resistance to spallation. Characterization was performed using SEM and analytical TEM. The crystalline structure and the morphology of the as-formed oxide scale were studied as a function of the different parameters.
机译:这项研究的目的是确定预氧化温度和粘结涂层的表面状态对在氧化的第一阶段形成的氧化皮的微观结构及其在随后的长期氧化(1000h)后的附着力的影响。在1100℃下进行。在几个温度(900℃,1100℃)下,在沉积有两种不同表面状态(经铝化或喷砂处理)的Pt改性NiAl粘结涂层上进行了1 h的短期等温氧化。在超级合金(AM1)上。比较了在1100摄氏度的空气中进行了额外的等温老化处理1000小时后,不同系统的附着力,以便得出导致最佳抗剥落性的初始氧化皮。使用SEM和分析TEM进行表征。研究了形成的氧化物鳞片的晶体结构和形态随不同参数的变化。

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