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Modified embedded-atom method interatomic potential for Mg-Y alloys

机译:Mg-Y合金的改性嵌入式原子方法潜力

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摘要

An interatomic potential for the Mg-Y binary system is developed within the framework of the second-nearest-neighbor modified embedded-atom method (MEAM) based on a very good MEAM potential for pure Mg. The Mg-Y potential is fitted to a range of key physical properties, either experimental or computed by first-principles methods, including the Y interaction energy with basal and pyramidal stacking faults, and properties of the B2 Mg-Y intermetallic phase. Reasonable agreement is obtained-much better than existing potentials in the literature-but differences remain for subtle but important aspects of Y solutes in Mg. The predictions of the potential for Y misfit volume in Mg, Y solute interactions with the pyramidal II 'c + a' edge dislocation and {10 (1) over bar2} '(1) over bar 011' tension-twin boundary are then compared against recent density functional theory results, and reasonable accuracy is obtained. In light of the spectrum of results presented here, the applicability and limitations of this Mg-Y MEAM potential for investigating various plasticity phenomena in Mg-Y solid solution alloys are carefully discussed.
机译:基于纯MG的非常好的MEA电位,在第二最近邻改进的嵌入式 - 原子方法(MEAM)的框架内开发了MG-Y二进制系统的内部潜力。 Mg-Y电位适用于一系列关键物理性质,通过第一原理方法进行实验性或计算,包括Y相互作用能量,具有基础和金字塔堆叠故障,以及B2 Mg-Y金属间相的性质。获得合理的协议 - 比文学中的现有潜力更好 - 但差异仍然是MG中Y溶质的微妙而重要的方面。比较了与金字塔II'C + A'边缘位错和{10(1)上的y静脉相互作用的Mg,Y溶质相互作用的潜能量的预测,然后比较了张力张力 - 双边界的{10(1)针对最近的密度函数理论结果,获得合理的准确性。鉴于此处呈现的结果,仔细讨论了研究Mg-Y固体溶液合金中各种塑性现象的Mg-Y母型电位的适用性和限制。

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