论文标题
Alcocr0.75cu0.5feni高渗透粉末的早期阶段分离在纳米级
Early stage phase separation of AlCoCr0.75Cu0.5FeNi high-entropy powder at the nanoscale
论文作者
论文摘要
高熵合金通常被认为是单相材料。但是,以高冷却速率制造后,这种状态通常是一种非平衡状态。制造或热处理后的相结构主要以等温退火和铸件以及快速淬火的合金而闻名。到目前为止,缺少有关高熵合金及其机制的早期分离阶段的知识。在这里,我们通过表征Alcocr0.75CU0.5FENI合金的气雾粉的表征,在中间冷却速率下呈现相位分离的结果。尽管X射线衍射和电子反向散射衍射的研究表明粉末颗粒的单相性质,但畸变校正的扫描透射电子显微镜和原子探针断层扫描显示,纳米级分离纳米相分离到Ni-Al-Al-Al-alich B2和FE-CR-CR-CR-CR-CR-CR-CR-CR-CR-CR-CR-CR-CR-CR-CR-CR-CR-CR-CR-CR-CR-CR-CR-CR-CRICH的高密度以及3.1x1024 Cu-Rich的高度密度以及较高的数字。观察到的相分离和簇的形成分别与旋缺骨分解和成核过程有关。该研究强调,在发表有关相复杂合金中相位稳定性和结构进化的陈述时,需要选择适当的表征技术。
High entropy alloys are generally considered to be single phase material. This state is, however, typically a non-equilibrium state after fabrication at high cooling rates. Phase constitution after fabrication or heat treatment is mostly known for isothermal annealing only and for casts as well as rapidly quenched alloys. Knowledge on early phase separation stages of high entropy alloys and their mechanisms are missing so far. Here, we present results on phase separation at intermediate cooling rates, by characterization of gas atomized powder of the AlCoCr0.75Cu0.5FeNi alloy. Although investigation by X-ray diffraction and Electron Backscatter Diffraction indicates a single-phase nature of the powder particles, aberration-corrected scanning transmission electron microscopy and atom probe tomography reveal a nanoscale phase separation into Ni-Al-rich B2 and Fe-Cr-rich A2 regions as well as a high number density of 3.1x1024 Cu-rich clusters per m3 in the B2 matrix. The observed phase separation and cluster formation are linked to spinodal decomposition and nucleation processes, respectively. The study highlights that adequate characterization techniques need to be chosen when making statements about phase stability and structural evolution in compositionally complex alloys.