论文标题
NBMOTAW的扩展界面隔离区内的化学顺序过渡
Chemical order transitions within extended interfacial segregation zones in NbMoTaW
论文作者
论文摘要
界面隔离和化学短距离排序会影响复合浓缩合金中晶界的行为。在这项研究中,我们使用NBMOTAW难治性复合物浓缩合金的原子建模,以深入了解这两种现象之间的相互作用。在柱状晶粒模型上进行杂交蒙特卡洛和分子动力学模拟,以鉴定晶粒边界结构。我们的结果表明,较长的近似隔离区比传统的隔离区大得多,这些区域也表现出化学模式,它们桥接了界面和谷物内部区域。此外,在这些扩展的隔离区域内观察到与A2-to-B2转化有关的结构过渡。发现晶粒尺寸和温度都显着改变了这些区域的宽度。化学短距离顺序的分析表明,并非所有成对元素相互作用都受到晶界的存在的影响,因为只有元素聚类类型的子集更有可能驻留在某些边界附近。结果强调了与近似隔离区有关的化学复杂性的增加,并证明了复杂浓缩合金中界面分离的独特性质。
Interfacial segregation and chemical short-range ordering influence the behavior of grain boundaries in complex concentrated alloys. In this study, we use atomistic modeling of a NbMoTaW refractory complex concentrated alloy to provide insight into the interplay between these two phenomena. Hybrid Monte Carlo and molecular dynamics simulations are performed on columnar grain models to identify equilibrium grain boundary structures. Our results reveal extended near-boundary segregation zones that are much larger than traditional segregation regions, which also exhibit chemical patterning that bridges the interfacial and grain interior regions. Furthermore, structural transitions pertaining to an A2-to-B2 transformation are observed within these extended segregation zones. Both grain size and temperature are found to significantly alter the widths of these regions. Analysis of chemical short-range order indicates that not all pairwise elemental interactions are affected by the presence of a grain boundary equally, as only a subset of elemental clustering types are more likely to reside near certain boundaries. The results emphasize the increased chemical complexity that is associated with near-boundary segregation zones and demonstrate the unique nature of interfacial segregation in complex concentrated alloys.