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Stress Distribution Measured by Raman Spectroscopy in Zirconia Films Formed by Oxidation of Zr-Based Alloys

机译:用拉曼光谱法测量Zr基合金氧化形成的氧化锆膜中的应力分布

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Raman spectroscopy is used to characterize zirconia films formed on Zircaloy-4 and Zr-1percentNb-0.12percentO oxidized in pure water and in water containing 70 ppm of Li as LiOH at 360deg C in an autoclave. Raman spectra of monoclinic and tetragonal zirconia change across the thickness of the oxide films. The use of a high-pressure cell enabled us to calibrate the line frequency variation of monoclinic zirconia with pressure. Thus we obtained the distribution of compressive stress in the zirconia films. By developing a model, it was possible to use the Raman spectra to obtain the distribution of compressive stresses and of the fraction of the tetragonal phase in the oxide films. Using Raman imaging, we showed that tetragonal zirconia is formed in large quantities close to the metal/oxide interface. The distribution of the compressive stresses changes according to the oxidation stage. In the case of Zircaloy-4 oxidation in water containing 70 ppm of Li as LiOH, the appearance of Phase III correlates with the gradual decrease of compressive stresses close to the metal/oxide interface. The level and distribution of the stresses in the zirconia films depend on the chemical composition of the alloy and the oxidizing medium.
机译:拉曼光谱法用于表征在高压釜中在纯水和在360℃下于纯水和含70 ppm Li作为LiOH的水中氧化的Zircaloy-4和Zr-1percentNb-0.12percentO上形成的氧化锆膜的特性。单斜晶和四方氧化锆的拉曼光谱在整个氧化膜厚度上变化。高压电池的使用使我们能够校准单斜氧化锆随压力变化的线路频率变化。因此,我们获得了氧化锆膜中压缩应力的分布。通过建立模型,可以使用拉曼光谱获得氧化膜中的压应力分布和四方相的分数。使用拉曼成像,我们表明在金属/氧化物界面附近大量形成了四方氧化锆。压应力的分布根据氧化阶段而变化。在含有70 ppm Li作为LiOH的水中Zircaloy-4氧化的情况下,相III的出现与靠近金属/氧化物界面的压应力的逐渐降低有关。氧化锆膜中应力的水平和分布取决于合金和氧化介质的化学成分。

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