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KINETIC MONTE CARLO SIMULATION OF CATION DIFFUSION IN LOW-K CERAMICS

机译:低K陶瓷中阳离子扩散的动力学蒙特卡罗模拟

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Low thermal conductivity (low-K) ceramic materials are of interest to the aerospace community for use as the thermal barrier component of coating systems for turbine engine components. In particular, zirconia-based materials exhibit both low thermal conductivity and structural stability at high temperature, making them suitable for such applications. Because creep is one of the potential failure modes, and because diffusion is a mechanism by which creep takes place, we have performed computer simulations of cation diffusion in a variety of zirconia-based low-K materials. The kinetic Monte Carlo simulation method is an alternative to the more widely known molecular dynamics (MD) method. It is designed to study "infrequent-event" processes, such as diffusion, for which MD simulation can be highly inefficient. We describe the results of kinetic Monte Carlo computer simulations of cation diffusion in several zirconia-based materials, specifically, zirconia doped with Y, Gd , Nb and Yb. Diffusion paths are identified, and migration energy barriers are obtained from density functional calculations and from the literature. We present results on the temperature dependence of the diffusivity, and on the effects of the presence of oxygen vacancies in cation diffusion barrier complexes as well.
机译:低导热率(低k)陶瓷材料对航空航天群落感兴趣,以用作涡轮发动机部件的涂布系统的热阻挡部件。特别地,基于氧化锆的材料在高温下表现出低导热率和结构稳定性,使得它们适用于这种应用。因为蠕变是潜在的失效模式之一,因为扩散是蠕变发生的机制,所以我们已经在各种基于氧化锆的低K材料中进行了计算机模拟的阳离子扩散。动力学蒙特卡罗仿真方法是更广泛的已知分子动力学(MD)方法的替代方案。它旨在学习“不频繁事件”的过程,例如扩散,MD模拟可能具有高效的。我们描述了在几种基于氧化锆基材料中的阳离子扩散的动力学蒙特卡罗计算机模拟结果,具体而言,氧化锆掺杂有Y,Gd,Nb和Yb。鉴定扩散路径,并且迁移能量屏障从密度函数计算和文献中获得。我们存在导致扩散率的温度依赖性以及阳离子扩散阻挡配合物中的氧空位的影响。

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