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KINETIC MONTE CARLO SIMULATION OF CATION DIFFUSION IN YTTRIA-STABILIZED ZIRCONIA

机译:基因稳定氧化锆阳离子扩散的动力学蒙特卡罗模拟

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摘要

Yttria-stabilized zirconia (YSZ) is of interest to the aerospace community, notably for its application as a thermal barrier coating. In such an application, the inhibition of oxygen diffusion is a major concern, and this issue has been addressed via molecular dynamics and kinetic Monte Carlo simulation. However, the mechanical integrity of such coatings can be affected by processes involving diffusive motion on the cation lattice.In this work, we perform kinetic Monte Carlo simulations to investigate cation diffusion in YSZ. Using diffusive migration barrier energies from the literature, we obtain diffusivities that are several orders of magnitude smaller than oxygen diffusivities from experiment, or from earlier simulations. We report on the effects on cation diffusivity of cation sublattice vacancy concentration, Y concentration, and temperature, and relate these results to oxygen diffusion in the same materials.
机译:yttria稳定的氧化锆(YSZ)对航空航天群落感兴趣,特别是其应用作为热障涂层。在这种应用中,抑制氧气扩散是一个主要问题,并且通过分子动力学和动力学蒙特卡罗模拟解决了这个问题。然而,这种涂层的机械完整性可以受到涉及阳离子格的扩散运动的过程的影响。在这项工作中,我们执行动力学蒙特卡罗模拟以研究YSZ中的阳离子扩散。利用来自文献的扩散迁移能量,我们获得了比实验的氧漫射或从早期模拟小于氧漫射的数量级的几个数量级的扩散性。我们报告了对阳离子分子空位浓度,Y浓度和温度的阳离子扩散性的影响,并将这些结果与相同材料的氧扩散相关。

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