Cheng Ting, Zhong Jing, Zhang Lijun
State Key Laboratory of Powder Metallurgy, Central South University, Changsha 410083, China.
Materials (Basel). 2021 Dec 31;15(1):283. doi: 10.3390/ma15010283.
In this paper, a general and effective strategy was first developed to maintain the CALPHAD atomic mobility database of multicomponent systems, based on the pragmatic numerical method and freely accessible HitDIC software, and then applied to update the atomic mobility descriptions of the hcp Mg-Al-Zn, Mg-Al-Sn, and Mg-Al-Zn-Sn systems. A set of the self-consistent atomic mobility database of the hcp Mg-Al-Zn-Sn system was established following the new strategy presented. A comprehensive comparison between the model-predicted composition-distance profiles/inter-diffusivities in the hcp Mg-Al-Zn, Mg-Al-Sn, and Mg-Al-Zn-Sn systems from the presently updated atomic mobilities and those from the previous ones that used the traditional method indicated that significant improvement can be achieved utilizing the new strategy, especially in the cases with sufficient experimental composition-distance profiles and/or in higher-order systems. Furthermore, it is anticipated that the proposed strategy can serve as a standard for maintaining the CALPHAD atomic mobility database in different multicomponent systems.
本文首先基于实用数值方法和可免费获取的HitDIC软件,开发了一种通用且有效的策略来维护多组分体系的CALPHAD原子迁移率数据库,然后将其应用于更新hcp Mg-Al-Zn、Mg-Al-Sn和Mg-Al-Zn-Sn体系的原子迁移率描述。按照所提出的新策略,建立了一组hcp Mg-Al-Zn-Sn体系自洽的原子迁移率数据库。对目前更新的原子迁移率与之前使用传统方法得到的hcp Mg-Al-Zn、Mg-Al-Sn和Mg-Al-Zn-Sn体系中模型预测的成分-距离分布/互扩散率进行的全面比较表明,利用新策略可实现显著改进,尤其是在有足够实验成分-距离分布和/或高阶体系的情况下。此外,预计所提出的策略可作为维护不同多组分体系中CALPHAD原子迁移率数据库的标准。