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Influence of TGO Composition on the Thermal Shock Lifetime of Thermal Barrier Coatings with Cold-sprayed MCrAlY Bond Coat

机译:TGO组成对热喷涂麦克酸粘土粘膜粘膜涂层热冲击寿命的影响

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NiCoCrAlTaY bond coat was deposited by cold spraying to assemble thermal barrier coatings (TBCs). The microstructure of the cold-sprayed bond coat was examined using scanning electron microscopy. TBCs consisting of cold-sprayed bond coat and plasma-sprayed YSZ were pretreated at different conditions to form different thermally grown oxides (TGOs) before thermal cycling test. The influence of the TGO composition on the thermal cyclic lifetime was quantitatively examined through the measurement of the coverage ratio of the mixed oxides on the bond coat surface. The results showed that the bond coat exhibited a dense oxidation-free microstructure, and TGOs in different morphologies and constituents were present after thermal cyclic test. The formation of TGOs was significantly influenced by pre-treatment conditions. Two kinds of TGO were detected on the surface of bond coat after the spallation of YSZ coatings. One is the α-Al_2O_3-based TGO and the other is the mixed oxide. It was found that the thermal cyclic lifetime is inversely proportional to the coverage ratio of the mixed oxides formed at the bond coat/YSZ interface. The high coverage ratio of the mixed oxide on the interface leads to the early spalling of YSZ coating.
机译:通过冷喷涂沉积Nicocraltay键涂层以组装热阻挡涂层(TBC)。使用扫描电子显微镜检查冷喷涂粘合涂层的微观结构。在热循环试验之前,在不同条件下预处理由冷喷涂的粘合涂层和等离子体喷涂的YSZ组成的TBC,以形成不同的热生长氧化物(TGOS)。通过测量粘合涂层表面上的混合氧化物的覆盖率,定量地检查TGO组成对热环寿命的影响。结果表明,粘结涂层出现了无抗氧化微结构,在热环磨后存在不同形态和成分的TGO。 TGO的形成受预处理条件的显着影响。在YSZ涂层的介绍后,在粘合涂层表面上检测到两种TGO。一种是基于α-Al_2O_3的TGO,另一个是混合氧化物。发现热循环寿命与在粘合涂层/ YSZ接口上形成的混合氧化物的覆盖率成反比。混合氧化物在界面上的高覆盖率导致YSZ涂层的早期剥落。

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