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Thermal Conductivity and Stability of HfO2-Y2O3 and La2Zr2O7 Evaluated for 1650 Deg C Thermal/Environmental Barrier Coating Applications

机译:HfO2-Y2O3和La2Zr2O7的热导率和稳定性在1650°C热/环境屏障涂层应用中得到评估

摘要

HfO2-Y2O3 and La2Zr2O7 are candidate thermal and environmental barrier coating (T/EBC) materials for gas turbine ceramic matrix composite (CMC) combustor applications because of their relatively low thermal conductivity and high temperature capability. In this paper, thermal conductivity and high temperature stability of hot-pressed and plasma sprayed specimens with representative partially-stabilized and fully-cubic HfO2-Y2O3 compositions and La2Zr2O7 were evaluated at temperatures up to 1700 C using a steady-state laser heat-flux technique. Sintering behavior of the plasmasprayed coatings was determined by monitoring the thermal conductivity increases during a 20-hour test period at various temperatures. Durability and failure mechanisms of the HfO2-Y2O3 and La2Zr2O7 coatings on mullite/SiC hexoloy or SiC/SiC CMC substrates were investigated at 1650 C under thermal gradient cyclic conditions. Coating design and testing issues for the 1650 C thermal/environmental barrier coating applications are also discussed.
机译:HfO2-Y2O3和La2Zr2O7由于其相对较低的导热率和高温性能,是燃气轮机陶瓷基复合材料(CMC)燃烧器应用的候选热障和环境屏障涂层(T / EBC)材料。在本文中,使用稳态激光热通量评估了具有代表性的部分稳定和全立方HfO2-Y2O3成分和La2Zr2O7的热压和等离子喷涂样品的热导率和高温稳定性,其温度高达1700C。技术。通过监测在各种温度下20小时的测试过程中导热系数的增加来确定等离子喷涂涂层的烧结行为。在热梯度循环条件下,研究了莫来石/ SiC六面体或SiC / SiC CMC基板上HfO2-Y2O3和La2Zr2O7涂层的耐久性和破坏机理。还讨论了1650 C热/环境屏障涂层应用的涂层设计和测试问题。

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