Continuous chemical redistribution following amorphous-to-crystalline structural ordering in a Zr-Cu-Al bulk metallic glass

作者:Wu, Xuelian; Lan, Si; Li, Xiyang; Yang, Ming; Wu, Zhenduo; Wei, Xiaoya; He, Haiyan; Naeem, Muhammad; Zhou, Jie; Lu, Zhaoping; Gilbert, Elliot Paul; Ma, Dong; Wang, Xun-Li*
来源:JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY, 2022, 101: 285-293.
DOI:10.1016/j.jmst.2021.05.062

摘要

Bulk metallic glasses (BMGs) are thermodynamically metastable. As such, crystallization occurs when a BMG is thermally annealed at a temperature above the glass transition temperature. While extensive studies have been performed on the crystallization kinetics of BMGs, most of them have focused on the amorphous-to-crystalline structural ordering, and little attention has been paid to chemical distribution and its relationship with the structural ordering during the crystallization process. In this paper, a new approach, with simultaneous differential scanning calorimetry (DSC) and small angle neutron scattering (SANS) measurements, was applied to study in situ the crystallization of a Zr45.5Cu45.5Al9 BMG upon isothermal annealing at a temperature in the supercooled liquid region. Quantitative analysis of the DSC and SANS data showed that the structural evolution during isothermal annealing could be classified into three stages: (I) incubation; (II) amorphous-to-crystalline structural ordering; (III) continuous chemical redistribution. This finding was validated by composition analysis with atom probe tomography (APT), which further identified a transition region formed by expelling Al into the matrix. The transition region, with a composition of (Cu,Al)(50)Zr-50, served as an intermediate step facilitating the formation of a thermodynamically stable crystalline phase with a composition of (Cu,Al)(10)Zr-7.

  • 单位
    6; 1; 中国科学院; 南京理工大学; 北京科技大学