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Comparison of microstructural evolution and oxidation behaviour of NiCoCrAlY and CoNiCrAlY as bond coats used for thermal barrier coatings

机译:与热屏障涂层用于热障涂层的粘结型和环状氧化行为的比较

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摘要

NiCoCrAlY and CoNiCrAlY bond coats used for thermal barrier coatings, as well as 8 wt% Y2O3-stabilized ZrO2 (8YSZ) ceramic top coat, were air plasma sprayed on Inconel 718 superalloy and then subjected to thermal exposure at 950, 1050 degrees C in air. The microstructural evolution and oxidation behaviour of bond coats were comparatively studied using scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS). The results show that the diffusion of Al is the key factor causing the microstructural changes, resulting in three zones in the bond coats: outer beta-depleted zone (OBDZ), inner beta-depleted zone (IBDZ) and beta-left zone (BLZ). The thickness of BLZ decreases with the increasing of the heating time or temperature. NiCoCrAlY bond coat with higher Al content presents lower beta-depletion rate and smaller Al interdiffusion coefficient, and the oxide scale is predominantly composed of Al2O3 whereas in the CoNiCrAlY coating, large amount of non alpha-alumina oxides have been found, resulting in the larger oxidation constant at the stable oxidation period and higher micro-crack density at the 8YSZ/TGO interface and 8YSZ coating. The results reveal that NiCoCrAlY bond coat presents better characteristics of oxidation resistance and crack resistance when used for thermal barrier coatings.
机译:用于热阻挡涂层的Nicocraly和Conicraly粘结涂层,以及8wt%的Y 2 O 3稳定的ZrO2(8倍)陶瓷顶部涂层是在Inconel 718超合金上喷涂的空气等离子体,然后在950,1050℃的空气中进行热暴露。使用扫描电子显微镜(SEM)和能量分散光谱(EDS)进行粘合涂层的微观结构演化和氧化行为。结果表明,A1的扩散是导致微观结构变化的关键因素,导致粘合涂层中的三个区域:外β耗尽区(OBDZ),内β耗尽区(IBDZ)和β左区域(BLZ )。 BLZ的厚度随着加热时间或温度的增加而降低。具有较高Al含量的Nicocraly键涂层具有更低的β-耗尽率和更小的Al间隔系数,并且氧化物尺度主要由Al2O3组成,而在同色涂层中,已经发现大量的非α-氧化铝氧化物,导致较大的非α-氧化铝氧化物氧化在稳定的氧化周期和8倍/ TGO界面和8毫秒涂层上的微裂纹密度恒定。结果表明,当用于热障涂层时,NicoCraly粘结涂层呈现出更好的抗氧性和抗裂性特性。

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