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Measurement on the thermal barrier ability of ceramic coatings in a flame thermal shock tester

机译:火焰热休克测试仪中陶瓷涂层的热阻挡能力测量

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Ceramic materials are widely used at high temperatures due to their low thermal conductivity. Thermal barrier coatings (TBCs) have been applied in hot sections in industrial gas turbines and air engines. The measurement of the thermal barrier ability of the TBCs is very important for coating property evaluation, that can be done in hot gases with temperature gradient through the coatings. In this study, a flame thermal shock tester was used for such investigation. Thick TBC, containing a MCrAlY bond coat and a YSZ top coat, was sprayed onto a superalloy substrate by air plasma spray (APS) process. In the test, hot flame impacted on the top coat surface with the temperature controlled by an infrared thermometer. A thermocouple was attached onto the backside of the substrate to measure the backside temperature. Therefore, the temperature gradient in the TBC can be evaluated. The thermal barrier ability of the TBCs in different back cooling rate was studied.
机译:由于它们的导热性低,陶瓷材料广泛使用在高温下。 热阻挡涂层(TBC)已应用于工业燃气轮机和空气发动机的热部分。 TBC的热阻挡能力的测量对于涂覆性评估非常重要,这可以通过涂层的温度梯度在热气体中完成。 在这项研究中,火焰热休克测试仪用于这种研究。 通过空气等离子体喷雾(APS)工艺将含有McRaly键涂层和YSZ顶层涂层的厚TBC喷涂到超合金基板上。 在测试中,热火焰撞击顶层表面,温度由红外温度计控制。 将热电偶连接到基板的背面以测量背面温度。 因此,可以评估TBC中的温度梯度。 研究了TBCS以不同的背冷却速率的热阻能力。

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