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Atomistic simulations of grain and interphase boundary mobility

机译:晶粒和相间边界迁移率的原子模拟

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In recent years, atomistic simulations have provided valuable insights into the thermodynamic and kinetic properties of grain and interphase boundaries. In this work, we provide a brief overview of kinetic processes occurring at migrating interfaces and survey various molecular dynamics techniques for extracting grain boundary mobilities. The advantages and disadvantages of fluctuation and applied driving force methods will be discussed. In addition, we review recent examples of simulations that have identified structural phase transformations at grain boundaries. Finally, simulations that have investigated the mobility and atomic mechanisms of growth of an fcc–bcc interphase boundary are summarized.
机译:近年来,原子模拟为了解晶粒和相间边界的热力学和动力学特性提供了宝贵的见解。在这项工作中,我们提供了在迁移界面发生的动力学过程的简要概述,并调查了用于提取晶界迁移率的各种分子动力学技术。将讨论波动和应用驱动力方法的优缺点。此外,我们回顾了最近的模拟示例,这些示例已经确定了晶界处的结构相变。最后,总结了研究fcc-bcc相间边界迁移率和原子增长机理的模拟。

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