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Microstmctural Arrangement and Densification of 10GDC-xTZP Solid Solutions

机译:10GDC-XTZP固溶体的Microstmctural布置和致密化

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Solid solutions between tetragonal zirconia polycrystals (TZP) and gadolinia doped ceria with a norminal composition Ce_(0.9)G_(0.1)O_(1.95)(10GDC) powders were studied. The selected composition was 5-15 wt% TZP. The XRD results showed that a complete solid solution between TZP and 10GDC had occurred after sintering at 1500-1600 °C, resulting in a progressive decrease of the cubic lattice parameters of the 10GDC. At 1500 °C sintering, when the TZP content was increased, porosity was also increased while grain growth was suppressed. However, when the sintering temperature was changed to 1600 °C, a rapid grain growth with ananisotropic grain morphologyfor the samples with 10 and 15wt% TZP was obtained. Vickers hardness was slightly improved with increasing TZP contents when there was no effect of porosity. Fracture toughness was, however, slightly decreased with increasing TZP content. Unfavourable flexural strength was always obtained in all samples mainly due to the anomalous microstructure. The ionic conductivity was not only governed by microstructure but also by lattice deformation due to the solid solution.
机译:四边形氧化锆多晶(TZP)和钆掺杂的掺杂二氧化铈的固体溶液研究,具有稳定组合物Ce_(0.9)G_(0.1)O_(1.95)(10GDC)粉末。所选组合物为5-15wt%TZP。 XRD结果表明,在1500-1600℃下烧结后TZP和10GDC之间的完全固溶溶液,导致10GDC的立方晶格参数的逐步降低。在1500℃烧结时,当TZP含量增加时,孔隙率也增加,同时抑制了晶粒生长。然而,当烧结温度变为1600℃时,获得具有10和15wt%TZP的样品的横向晶粒形态的快速晶粒生长。随着孔隙率没有效果的增加,Vickers硬度略微改善。然而,随着TZP含量的增加,断裂韧性略微降低。在所有样品中总是在所有样品中获得不利的弯曲强度,主要是由于异常的微观结构。离子电导率不仅受微观结构的控制,而且通过固体溶液引起的晶格变形。

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