论文标题
对溶质隔离到镁边界的不均匀性质的原子见解
Atomistic insights into the inhomogeneous nature of solute segregation to grain boundaries in magnesium
论文作者
论文摘要
在具有多个替代元件的镁合金中,晶界(GB)处的溶质分离对许多重要的材料特征(例如GB能量和迁移率)具有很大的影响,因此具有质感。尽管GB种族隔离是不均匀的,但仍无法理解GB溶质组成的变化。在当前的研究中,原子级实验和模拟技术用于研究六种不同GB的组成不均匀性。三维原子探针断层扫描结果表明,Mg中ND的GB溶质浓度在2至5 at。%之间变化。这种变化不仅是针对不同的GB方向的,而且在GB平面内也可以看到。相关的原子模拟表明,在实验中观察到的不均匀隔离行为源于GBS内的局部原子重排,并在改善了每个位置隔离能的预测的情况下引入了潜在的过量自由体积的概念。
In magnesium alloys with multiple substitutional elements, solute segregation at grain boundaries (GBs) has a strong impact on many important material characteristics, such as GB energy and mobility, and therefore, texture. Although it is well established that GB segregation is inhomogeneous, the variation of GB solute composition for random boundaries is still not understood. In the current study, atomic-scale experimental and simulation techniques were used to investigate the compositional inhomogeneity of six different GBs. Three-dimensional atom probe tomography results revealed that GB solute concentration of Nd in Mg varies between 2 to 5 at.%. This variation was not only seen for different GB orientations but also within the GB plane. Correlated atomistic simulations suggest that the inhomogeneous segregation behavior observed experimentally stems from local atomic rearrangements within the GBs and introduce the notion of potential excess free volume in the context of improving the prediction of per-site segregation energies.