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Effect of post heat treatment on thermal durability of thermal barrier coatings in thermal fatigue tests

机译:后热处理对热疲劳测试中热障涂层热耐久性的影响

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The effects of post heat treatment and coating parameters on the microstructural development of thermal barrier coatings (TBCs) have been investigated and the thermal durability related to the microstructural evolution has been evaluated through cyclic thermal exposure tests. TBC systems with thicknesses of 2000 and 200μm in the top and bond coats, respectively, were prepared with the air-plasma spray system using a 9MB gun with ZrO_2-8wt.% Y_2O_3 (METCO 204 C-NS) for the top coat and Ni-based metallic powder (AMDRY 962) for the bond coat. The post heating was performed at a temperature of 1000°C for 3h with a heating rate of 5°C/min in flowing argon (Ar) gas at 200ml/min. The thermal exposure tests were performed with a dwell time of 60min for 874cycles using a specially designed apparatus-one side of the sample was exposed to a high temperature of 1100°C and the other side was air cooled to 950°C. The post heat treatment is an efficient process in improving the thermal durability of thick TBCs, and the TBC with porous microstructure obtained by controlling coating parameters shows a better thermal durability than those with intermediate or dense microstructures. Results indicate that post heat treatment and microstructural control are important in proposing efficient processes to improve the lifetime performance of thick TBCs in high-temperature environments.
机译:研究了后热处理和涂层参数对热障涂层(TBC)微观结构发展的影响,并通过循环热暴露测试评估了与微观结构演变相关的热耐久性。使用9MB喷枪用ZrO_2-8wt。%Y_2O_3(METCO 204 C-NS)作为表面涂层和Ni,通过空气等离子喷涂系统制备分别在表面涂层和粘结涂层中厚度分别为2000和200μm的TBC系统。基金属粉末(AMDRY 962)用于粘结层。在流动的氩气(Ar)中以200ml / min的速度在1000℃的温度下以5℃/ min的加热速率进行3h后加热。使用专门设计的设备以874次循环的60分钟驻留时间进行热暴露测试,将样品的一侧暴露于1100°C的高温,另一侧空气冷却至950°C。后热处理是改善厚TBC的热耐久性的有效方法,并且通过控制涂层参数获得的具有多孔微结构的TBC比具有中等或致密微结构的TBC具有更好的热耐久性。结果表明,后热处理和微结构控制对于提出有效的过程以改善高温环境下厚TBC的寿命性能至关重要。

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