首页> 外文期刊>Journal of the European Ceramic Society >Phase equilibria in the ZrO2-YO1.5-TaO2.5 system at 1250 degrees C
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Phase equilibria in the ZrO2-YO1.5-TaO2.5 system at 1250 degrees C

机译:ZrO2-Yo1.5-Tao2.5系统的相平衡在1250摄氏度下

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摘要

The phase relationships in the ZrO2-YO1.5-TaO2.5 (ZYTO) system at 1250 degrees C-a temperature of interest for thermal barrier coatings applications-were investigated using precursor-derived powders. The system is bisected by a quasi-binary joining the tetragonal (t) ZrO2 and monoclinic (M') YTaO4 solid solutions. The mutual solubility limits for these phases differ significantly depending on whether the third phase in equilibrium with t and M' is fluorite or the orthorhombic (O) Zr6Ta2O17. More importantly, the tetragonal phase in equilibrium with fluorite is non-transformable to the monoclinic form upon cooling, whereas that in equilibrium with O, which has lower stabilizer content, is transformable. The behavior contrasts with that previously observed for the equilibrium at 1500 degrees C, wherein the t phase on both sides of the quasi-binary is non-transformable. The fluorite solid solution extends from the ZrO2-YO1.5 binary to the YO1.5-TaO2.5 binary at 1250 degrees C, as previously shown for 1500 degrees C.
机译:使用前体衍生的粉末研究了1250摄氏度在1250摄氏度下的ZrO2-Yo1.5-Tao2.5(Zyto)系统中的相位关系 - 热阻挡涂层应用的感兴趣的温度。该系统由加入四方(T)ZrO2和单斜(M')YTAO4固溶溶液的准二元加入。这些相的相互溶解度限制根据与T和M'是否具有萤石或正交(O)Zr6Ta2O17的第三阶段是显着的。更重要的是,在冷却后,用萤石与萤石的平衡四方相是不可变形的,而在具有较低稳定剂含量的o平衡中,可转化。与预先观察到1500摄氏度的平衡的行为对比,其中准二元两侧的T相是不可变形的。萤石固溶体在1250℃下从ZrO 2-yo1.5二进制二进制延伸到Yo1.5-Tao2.5的二进制二进制。如前面所示的1500℃。

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