The Zinc-Rich Corner of the Fe-Si-Sn-Zn Quaternary System at 450 °C

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Abstract

The 450°C isothermal sections of the Fe-Si-Sn-Zn quaternary system with Zn composition fixed at 70 and 93 at.% were determined experimentally using optical microscopy, scanning electronic microscopy coupled with energy dispersive X-ray spectroscopy (SEM-EDS), and X-ray diffractometry (XRD). Five four-phase regions were identified in the 70 at.% Zn section, whereas no four-phase region was found in the 93 at.% Zn section. The liquid phase was found to be in equilibrium with almost all phases in the two sections, including the FeSn, FeSi, FeSi2, Γ1, δ, ζ, and α-Fe phases. The solubility of Sn in the ζ, FeSi, and FeSi2 phases was rather limited; however, the maximum solubility of Si in the FeSn phase was 0.5 wt.%. No quaternary compound was found in the study.

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Wang, X., Chen, X., Su, X., Yin, F., & Li, Z. (2019). The Zinc-Rich Corner of the Fe-Si-Sn-Zn Quaternary System at 450 °C. Metals, 9(8). https://doi.org/10.3390/met9080908

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