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Grain-Boundary Structure and Phase-Transformation Mechanism in Yttria-Stabilized Tetragonal Zirconia Polycrystal

机译:旱氧化钇稳定四方氧化锆多晶体中的晶界结构和相变理

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The microstructures in 3 mol% Y_2O_3-stabilized tetragonal zirconia polycrystal (Y-TZP) sintered at 1100°-1650°C were investigated to clarify cubic-formation and grain-growth iriechanisms. The cubic phase in Y-TZP appeared at 1300°C and its mass fraction increased with increasing sintering temperature. High-resolution transmission electron microscopy (HRTEM) and nanoprobe X-ray energy dispersive spectroscopy (EDS) measurements revealed that no amorphous layer existed along the grain-boundary faces in Y-TZP, and Y~(3+) ions segregated not only along the tetragonal-tetragonal phase boundaries but also along tetragonal-cubic phase boundaries. Scanning transmission electron microscopy (STEM) and nanoprobe EDS measurements revealed that the Y3+ ion distribution was nearly homogeneous up to 1300°C, but cubic phase regions with high Y~(3+) ion concentration clearly formed inside grains at 1500°C. These results indicate that cubic phase regions are formed from the grain boundaries and/or the multiple junctions in which Y~(3+) ions segregated. We termed such a new diffusive transformation phenomenon "grain boundary segregation-induced phase transformation (GBSIPT)". The grain-growth mechanism is controlled by the solute-drag effect of Y~(3+) ions segregating along the grain boundary.
机译:研究了在1100°-1650℃下烧结的3mol%Y_2O_3稳定的四方氧化锆的微结构,以阐明立方体形成和晶粒生长造型。 Y-TZP中的立方相出现在1300℃下,其质量分数随着烧结温度的增加而增加。高分辨率透射电子显微镜(HRTEM)和NanoProbe X射线能量分散谱(EDS)测量显示,沿Y-TZP的晶粒边界面不存在无定形层,而Y〜(3+)离子不仅沿着四方四方相界面,但沿四方立方相边界。扫描透射电子显微镜(茎)和Nanoprobe EDS测量显示,Y3 +离子分布几乎均匀,高达1300℃,但具有高Y〜(3+)离子浓度的立方相区域清楚地形成在1500℃的颗粒内。这些结果表明,立方相区域由晶界形成和/或y〜(3+)离子的多个结。我们称为这种新的漫反应现象“晶界偏析诱导的相变(GBSIPT)”。晶粒生长机制由沿晶界分离的Y〜(3+)离子的溶质 - 阻力作用控制。

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