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On the accurate description of uranium metallic phases: a MEAM interatomic potential approach

机译:关于铀金属相的准确描述:MEAM原子间势方法

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A new interatomic potential in the framework of the modified embedded atom method (MEAM) to model U metal is presented. The potential acceptably reproduces the lattice parameters and cohesive energy of the orthorhombic αU. The relative stability of the experimentally observed phase at low temperatures with respect to several other structures (bct, bcc, simple cubic, tetragonal βNp, fcc and hcp) is also taken into account. Intrinsic point defect properties compare reasonably well with data from the literature. To determine the quality of the interaction, the potential is used to study a number of properties for the pure metal at finite temperatures and the results are compared with the available data. The obtained allotropic αU ? γU transformation and melting temperatures are in good agreement with experimental values. Based on the simulations, a new αU ? γU transformation mechanism is proposed.
机译:在改进的嵌入原子方法(MEAM)的框架内,提出了一种新的原子间势来模拟U金属。该电势可接受地复制正交晶αU的晶格参数和内聚能。还考虑了低温下实验观察到的相相对于其他几种结构(bct,bcc,简单立方,四方βNp,fcc和hcp)的相对稳定性。本征点缺陷性质与文献数据相当合理。为了确定相互作用的质量,可以使用电势来研究纯金属在有限温度下的许多性能,并将结果与​​可用数据进行比较。得到的同素异形体γU的转变和熔化温度与实验值非常吻合。基于模拟,新的αU?提出了γU变换机制。

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