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首页> 外文期刊>Journal of the European Ceramic Society >Low-thermal-conductivity and high-toughness CeO2-Gd2O3 co-stabilized zirconia ceramic for potential thermal barrier coating applications
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Low-thermal-conductivity and high-toughness CeO2-Gd2O3 co-stabilized zirconia ceramic for potential thermal barrier coating applications

机译:低导热率和高韧性CeO2-Gd2O3共稳定氧化锆陶瓷,用于潜在的热屏蔽应用

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摘要

Yttria partially stabilized zirconia (similar to 4.0 mol% Y2O3 ZrO2, 4YSZ) has been widely employed as thermal barrier coatings (TBCs) to protect the high temperature components of gas turbine engines. The phase stability problem existing in the conventional 4YSZ has limited it to application below 1200 degrees C. Here we report an excellent zirconia system co-doped with 16 mol% CeO2 and 4 mol% Gd2O3 (16Ce-4Gd) presenting nontransformable feature up to 1500 degrees C, in which no detrimental monoclinic (m) ZrO2 phase formed on partitioning. It also exhibits a high fracture toughness of similar to 46 J m(-2) and shows high sintering resistance. Besides, the thermal conductivity and thermal expansion coefficient of 16Ce-4Gd are more competent for TBCs applications as compared to the 4YSZ. The combination of properties suggests that the 16Ce-4Gd system could be of potential use as a thermal barrier coating at 1500 degrees C.
机译:YTTRIA部分稳定的氧化锆(类似于4.0mol%的Y2O3 ZrO2,4YSZ)已被广泛用作热阻挡涂层(TBC)以保护燃气轮机发动机的高温分量。 常规4YSZ中存在的相位稳定性问题限制在1200摄氏度以下施用。在这里,我们报告了一种优异的氧化锆系统,其具有16mol%CeO2和4mol%Gd2O3(16ce-4GD)的非转化特征高达1500 D度C,其中没有在分配上形成的无损单斜(M)ZrO2相。 它还表现出类似于46JM(-2)的高裂缝韧性并显示出高烧结抗性。 此外,与4YSZ相比,16CE-4GD的导热率和热膨胀系数对于TBCS应用更有竞争力。 性质的组合表明,16CE-4GD系统可能是在1500摄氏度下作为热障涂层的潜在用途。

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