Mechanism of generation of large (Ti,Nb,V)(C,N)-type precipitates in H13 + Nb tool steel

被引:0
|
作者
You Xie
Guo-guang Cheng
Lie Chen
Yan-dong Zhang
Qing-zhong Yan
机构
[1] University of Science and Technology Beijing,State Key Laboratory of Advanced Metallurgy
[2] Xining Special Steel Co.,undefined
[3] Ltd.,undefined
来源
International Journal of Minerals, Metallurgy, and Materials | 2016年 / 23卷
关键词
precipitates; carbonitrides; generating mechanism; tool steel; niobium;
D O I
暂无
中图分类号
学科分类号
摘要
The characteristics and generation mechanism of (Ti,Nb,V)(C,N) precipitates larger than 2 μm in Nb-containing H13 bar steel were studied. The results show that two types of (Ti,Nb,V)(C,N) phases exist—a Ti-V-rich one and an Nb-rich one—in the form of single or complex precipitates. The sizes of the single Ti-V-rich (Ti,Nb,V)(C,N) precipitates are mostly within 5 to 10 μm, whereas the sizes of the single Nb-rich precipitates are mostly 2–5 μm. The complex precipitates are larger and contain an inner Ti-V-rich layer and an outer Nb-rich layer. The compositional distribution of (Ti,Nb,V)(C,N) is concentrated. The average composition of the single Ti-V-rich phase is (Ti0.511V0.356Nb0.133)(CxNy), whereas that for the single Nb-rich phase is (Ti0.061V0.263Nb0.676)(CxNy). The calculation results based on the Scheil–Gulliver model in the Thermo-Calc software combining with the thermal stability experiments show that the large phases precipitate during the solidification process. With the development of solidification, the Ti-V-rich phase precipitates first and becomes homogeneous during the subsequent temperature reduction and heat treatment processes. The Nb-rich phase appears later.
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页码:1264 / 1274
页数:10
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