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Grain boundary phases in bcc metals

机译:bcc金属晶界阶段

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We report a computational discovery of novel grain boundary structures and multiple grain boundary phases in elemental body-centered cubic (bcc) metals represented by tungsten, tantalum and molybdenum. While grain boundary structures created by the -surface method as a union of two perfect half crystals have been studied extensively, it is known that the method has limitations and does not always predict the correct ground states. Herein, we use a newly developed computational tool, based on evolutionary algorithms, to perform a grand-canonical search of high-angle symmetric tilt and twist boundaries, and we find new ground states and multiple phases that cannot be described using the conventional structural unit model. We use molecular dynamics (MD) simulations to demonstrate that the new structures can coexist at finite temperature in a closed system, confirming that these are examples of different grain boundary phases. The new ground state is confirmed by first-principles calculations.
机译:我们报告一个计算发现小说粮食边界结构和多个晶界阶段基本体心立方(bcc)金属由钨、钽和钼。由表面作为工会的两个方法完美的晶体研究了一半广泛,众所周知,方法限制和并不总是预测正确的基态。开发了计算工具,基于进化算法,执行巨正则搜索对称的倾斜和扭曲边界,我们找到新的地面州和多个阶段,不能描述了使用传统的结构单元模型。可以证明新的结构在有限温度下和平共处在一个封闭的系统,确认这些是不同的例子晶界阶段。证实了采用基于计算。

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