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A continuously growing web-based interface structure databank

机译:不断增长的基于Web的界面结构数据库

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The macroscopic properties of materials can be significantly influenced by the presence of microscopic interfaces. The complexity of these interfaces coupled with the vast configurational space in which they reside has been a long-standing obstacle to the advancement of true bottom-up material behavior predictions. In this vein, atomistic simulations have proven to be a valuable tool for investigating interface behavior. However, before atomistic simulations can be utilized to model interface behavior, meaningful interface atomic structures must be generated. The generation of structures has historically been carried out disjointly by individual research groups, and thus, has constituted an overlap in effort across the broad research community. To address this overlap and to lower the barrier for new researchers to explore interface modeling, we introduce a web-based interface structure databank (www.isdb.cee.cornell.edu) where users can search, download and share interface structures. The databank is intended to grow via two mechanisms: (1) interface structure donations from individual research groups and (2) an automated structure generation algorithm which continuously creates equilibrium interface structures. In this paper, we describe the databank, the automated interface generation algorithm, and compare a subset of the autonomously generated structures to structures currently available in the literature. To date, the automated generation algorithm has been directed toward aluminum grain boundary structures, which can be compared with experimentally measured population densities of aluminum polycrystals.
机译:材料的宏观性能会受到微观界面的影响。这些接口的复杂性以及它们所驻留的巨大配置空间一直是推动真正的自下而上的材料行为预测的长期障碍。因此,原子模拟已被证明是研究界面行为的宝贵工具。但是,在可以使用原子模拟对界面行为进行建模之前,必须生成有意义的界面原子结构。从历史上看,结构的生成是由各个研究小组不相干地进行的,因此,在整个广泛的研究社区中,它们的工作是重叠的。为了解决这种重叠并减轻新研究人员探索界面建模的障碍,我们引入了基于Web的界面结构数据库(www.isdb.cee.cornell.edu),用户可以在其中搜索,下载和共享界面结构。该数据库旨在通过两种机制进行扩展:(1)来自各个研究小组的界面结构捐赠;(2)连续创建平衡界面结构的自动结构生成算法。在本文中,我们描述了数据库,自动接口生成算法,并将自动生成的结构的子集与文献中当前可用的结构进行了比较。迄今为止,自动生成算法已经针对铝晶界结构,可以将其与实验测量的铝多晶的种群密度进行比较。

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