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Impact of massive production of radiation defects on the structural stability of pure zirconia

机译:大量产生辐射缺陷对纯氧化锆结构稳定性的影响

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Optical spectroscopy and X-ray diffraction are used to study the behaviour of polycrystalline samples of pure monoclinic zirconia irradiated by low energy ions. A microscopic model based on these experiments is proposed to explain the displacive phase transition observed in this material after irradiation. Defects, produced in the oxygen sublattice, induce important strain fields on a nano-metric scale. This strain field can be handled as a secondary order parameter within the Landau theory approach, leading to a decrease of the phase transition temperature and thus quenching the high temperature tetragonal phase. The model also explains the consequences of the thermal annealing for restoring the ground state monoclinic structure.
机译:使用光谱学和X射线衍射研究低能离子辐照的纯单斜晶氧化锆多晶样品的行为。提出了基于这些实验的微观模型,以解释辐照后在该材料中观察到的置换相变。氧亚晶格中产生的缺陷会诱发纳米级的重要应变场。该应变场可以作为Landau理论方法中的次级参数处理,从而导致相变温度降低,从而淬灭高温四方相。该模型还解释了热退火对恢复基态单斜结构的影响。

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