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Synthesis and Phase Stability of Scandia, Gadolinia, and Ytterbia Co-doped Zirconia for Thermal Barrier Coating Application

机译:dia 、,和氧化钇共掺杂氧化锆在热障涂层中的合成及相稳定性

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摘要

Scandia, gadolinia, and ytterbia co-doped zirconia (SGYZ) ceramic powder was synthesized by chemical co-precipitation and calcination processes for application in thermal barrier coatings to promote the durability of gas turbines. The ceramic powder was agglomerated and sintered at 1150 degrees C for 2 h, and the powder exhibited good flowability and apparent density to be suitable for plasma spraying process. The microstructure, morphology and phase stability of the powder and plasma-sprayed SGYZ coatings were analyzed by means of scanning electron microscope and x-ray diffraction. Thermal conductivity of plasma-sprayed SGYZ coatings was measured. The results indicated that the SGYZ ceramic powder and the coating exhibit excellent stability to retain single non-transformable tetragonal zirconia even after high temperature (1400 degrees C) exposure for 500 h and do not undergo a tetragonal-to-monoclinic phase transition upon cooling. Furthermore, the plasma-sprayed SGYZ coating also exhibits lower thermal conductivity than yttria stabilized zirconia coating currently used in gas turbine engine industry. SGYZ can be explored as a candidate material of ultra-high temperature thermal barrier coating for advanced gas turbine engines.
机译:通过化学共沉淀和煅烧工艺合成了斯堪的亚,氧化和氧化钇共掺杂氧化锆(SGYZ)陶瓷粉末,以应用于隔热涂层中,以提高燃气轮机的耐久性。将该陶瓷粉末团聚并在1150℃下烧结2小时,该粉末表现出良好的流动性和表观密度,适合于等离子体喷涂工艺。通过扫描电子显微镜和X射线衍射分析了粉末和等离子喷涂的SGYZ涂层的微观结构,形态和相稳定性。测量了等离子喷涂的SGYZ涂层的热导率。结果表明,即使在高温(1400摄氏度)暴露500小时后,SGYZ陶瓷粉末和涂层仍具有优异的稳定性,可保留单个不可变形的四方氧化锆,并且在冷却时不会经历四方相向单斜相的转变。此外,等离子喷涂的SGYZ涂层还比目前在燃气涡轮发动机工业中使用的氧化钇稳定的氧化锆涂层具有更低的导热率。 SGYZ可以作为先进燃气轮机发动机的超高温隔热涂层的候选材料进行探索。

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