Effect of Ti addition on microstructure and crystalline orientations of directionally solidified Nb–Si based alloys

Xin Fang, Xiping Guo, Yanqiang Qiao

科研成果: 期刊稿件文章同行评审

26 引用 (Scopus)

摘要

Multi-element Nb–Si based alloys with nominal compositions of Nb-xTi-15Si–5Cr-1.5Hf-1.5Zr (x = 0, 10, 20 and 25 at. %) were simultaneously directionally solidified at 2050 °C. When the Ti addition contents are 0 10 at. %, the microstructure is composed of primary α-(Nb, X)5Si3 and NbSS/α-(Nb, X)5Si3 eutectic. When the Ti addition content reaches to 20 at. %, primary γ-(Nb, X)5Si3 appears and NbSS/γ-(Nb, X)5Si3 eutectic is formed at NbSS/α-(Nb, X)5Si3 eutectic cellular boundary or around primary γ-(Nb, X)5Si3. When the Ti addition increases to 25 at. %, α-(Nb, X)5Si3 is completely substituted by γ-(Nb, X)5Si3. Besides, the increasing Ti addition content increases the area fraction of primary (Nb, X)5Si3 and promotes the refinement of NbSS/(Nb, X)5Si3 eutectics. The crystalline orientation relationship between NbSS and α-(Nb, X)5Si3 is <001>Nb∥[001]α and {110}Nb∥{310}α when the Ti addition contents are ranged from 0 to 20 at. %. When the Ti addition content is 20 at. %, there exists no crystalline orientation relationship between NbSS and γ-(Nb, X)5Si3. When the Ti addition content reaches to 25 at. %, the crystalline orientation relationship between NbSS and γ-(Nb, X)5Si3 is <111>Nb//<0001>γ and {110}Nb//{101‾0}γ. With increasing Ti addition, the orientation deviation degree between NbSS and (Nb, X)5Si3 decreases, which indicates that the coupling degree of the eutectic increases at higher Ti addition contents.

源语言英语
文章编号106798
期刊Intermetallics
122
DOI
出版状态已出版 - 7月 2020

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