Zhang Jiali, Zhong Jing, Li Qin, Zhang Lijun
State Key Lab of Powder Metallurgy, Central South University, Changsha 410083, China.
Materials (Basel). 2021 Dec 24;15(1):113. doi: 10.3390/ma15010113.
NbSn plays an irreplaceable role in superconducting parts due to its stable performance under high field conditions. Accurate phase equilibria and interdiffusion coefficients are of great significance for designing novel NbSn superconductors. However, the related experimental information is still in a state of scarcity because of the difficulty in fabrication of Nb-Sn alloys caused by the large difference in melting points of Nb and Sn. In this paper, a simple but pragmatic approach was first proposed to prepare the Nb/Sn liquid-solid reactive diffusion couples (LSDCs) at 1100 °C and 1200 °C, of which the phase identification of the formed layer and the measurement of composition-distance profiles were conducted. The formed layer in Nb/Sn LSDCs was confirmed to be NbSn compound. While the measured composition profiles were employed to determine the phase equilibria according to the local equilibrium hypothesis and the interdiffusion coefficients with an aid of the latest version of HitDIC software. The determined phase equilibria of NbSn, (Nb) and liquid show good agreement with the assessed phase diagram. While the calculated interdiffusion coefficients and activation energy for diffusion in NbSn are consistent with both experimental and theoretical data in the literature. Moreover, the growth of the formed NbSn layer in Nb/Sn LSDCs was also found to be diffusion controlled. All the obtained phase equilibria and interdiffusion coefficients are of great value for further thermodynamic and kinetic modeling of the Nb-Sn system. Furthermore, it is anticipated that the presently proposed approach of fabricating liquid-solid reactive diffusion couple should serve as a general one for various alloy systems with large differences in melting points.
由于NbSn在高场条件下具有稳定的性能,因此在超导部件中发挥着不可替代的作用。准确的相平衡和互扩散系数对于设计新型NbSn超导体具有重要意义。然而,由于Nb和Sn熔点差异大导致Nb-Sn合金制备困难,相关实验信息仍然匮乏。本文首次提出了一种简单而实用的方法,在1100℃和1200℃下制备Nb/Sn液-固反应扩散偶(LSDC),并对形成层进行相鉴定和成分-距离分布测量。确认Nb/Sn LSDC中的形成层为NbSn化合物。同时,利用最新版的HitDIC软件,根据局部平衡假设,采用实测成分分布确定相平衡和互扩散系数。所确定的NbSn、(Nb)和液相的相平衡与评估的相图吻合良好。而计算得到的NbSn中的互扩散系数和扩散活化能与文献中的实验数据和理论数据均一致。此外,还发现Nb/Sn LSDC中形成的NbSn层的生长受扩散控制。所有获得的相平衡和互扩散系数对于Nb-Sn体系进一步的热力学和动力学建模具有重要价值。此外,预计目前提出的制备液-固反应扩散偶的方法对于熔点差异大的各种合金体系应具有通用性。