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On the high-temperature plasticity of ceria-doped zirconia nanostructured polycrystals

机译:关于二氧化铈掺杂氧化锆纳米结构多晶的高温可塑性

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Ceria-zirconia ceramic alloys with the following molar composition: 0.12CeO2-0.88ZrO_2 have been sintered by high-temperature annealing. Monolithic specimens haven been crept in compression at high temperatures. Creep experiments have been rationalized to an empirical constitutive equation which is consistent with a classical Ashby-Verrall creep regime. This result has been assessed through microstructural characterization of as-received and post-mortem specimens. A pure Ashby-Verrall creep is contrary to the conventional mechanism controlling creep in other zirconia alloys. A discussion on the explanation for such mechanism is outlined.
机译:二氧化铈 - 氧化锆陶瓷合金具有以下摩尔组合物:0.12CEO2-0.88ZRO_2已通过高温退火烧结。单片样品避风港在高温下被压缩悄然。蠕变实验已经合理化到经验组成型方程,其与古典ashby-verrall蠕变制度一致。该结果已经通过接收和验尸标本的微观结构表征评估。纯ashby-verlall蠕变与控制其他氧化锆合金的常规机构相反。概述了关于这种机制的解释的讨论。

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