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Simulation of the Diffusion Features of Point Defects in bcc Metals

机译:bcc金属中点缺陷扩散特征的模拟

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This work is devoted to simulation of the diffusion features of point defects in bcc metals. The properties of point defects have been investigated with the usage of many-body interatomic potentials. This approach, based on the density-functional theory, permitted us to derive more adequate diffusion features of solids. This investigation is carried out within the framework of the Finnis-Sinclair formalism, developed for an assembly of N atoms and represents the second-moment approximation of the tight-binding theory. We used a new model, based on the molecular static method for simulating the atomic structure near the defect and vacancy migration in pure metals. This approach gives the opportunity to simulate the formation and the migration volumes of the point defects, taking into consideration the influence of pressure on structure and consequently on energy. The diffusion characteristics of bcc α-Fe and anomalous β-Zr have been investigated.
机译:这项工作致力于模拟bcc金属中点缺陷的扩散特征。已经利用多体原子间电势研究了点缺陷的性质。这种基于密度泛函理论的方法使我们能够得出更充分的固体扩散特征。这项研究是在Finnis-Sinclair形式主义的框架内进行的,该框架是为N原子的组装而开发的,代表了紧束缚理论的第二步近似。我们使用了基于分子静态方法的新模型来模拟纯金属中缺陷附近的原子结构和空位迁移。这种方法为模拟点缺陷的形成和迁移量提供了机会,同时考虑了压力对结构的影响,进而对能量的影响。研究了bccα-Fe和反常β-Zr的扩散特性。

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