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A research on investment casting technology of Ti alloys

Huiguan WAN , Xiumei QI , Jing TIAN , Yuyong CHEN , Weiqiang ZHA , Jun JIA

材料科学技术(英)

In this research, the materials and the compositions of the surface slurries were chosen by considering the characteristics of Ti investment casting. The effects of solid-liquid ratios on the properties of the slurry and the effects of baking temperatures on the flexural strength have also been investigated. Flawless shells having smooth inner surface were manufactured with proper technology. Ti and its alloys were melted and poured by water-cooled Cu crucible vacuum induction furnace. The qualities of the investment castings made accordingly were studied and analyzed.

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Electron Structure of γ/α2 Phase Boundaries in TiAl Based Alloys

Fantao KONG , Ziyong CHEN , Yuyong CHEN , Jing TIAN , Yufeng SI

材料科学技术(英)

The valence electron structure ofγ/α2 phase boundaries in lamellar colonies in Ti-47Al-2M (M=Nb, Cr, V) (at. pct) was investigated by empirical electron theory of solid and molecules (EET) and its bond-length-difference (BLD) method. On this basis, the boundary condition of electron movement was employed in the improved Thomas-Fermi-Dirac (TFD) theory to decide the continuity of the electron density of the lamellar colonies interface and it is found that ofγ/α2 interface is continuous. Furthermore, it is found that adding alloying elements (including Nb, Cr, and V) can improve the electron density ( ρ ) ofγ/α2 interface, decrease △ρ ofγ/α2 interface. With the electron structure analysis together with properties analysis, the effect mechanism of alloying elements (Nb, Cr, V) improving mechanical properties was explained.

关键词: TiAl based alloy , null , null , null

Sinterability of Zirconia Top Coat of Investment Mold for Ti Alloy

Yuyong CHEN , Xiumei QI , Xuezhu MA , Huiguang WANG , Jing TIAN

材料科学技术(英)

In this paper, zirconia is used as top mold material for Ti investment casting. Top mold samples are made by proper mold building technology. The effect of different sintering temperature on chemical composition, microstructure and residual bending strength of the top mold sample is studied. The volume and homogeneity of the air holes in the top mold are determined by sintering temperature, and finally determined the residual bending strength of the mold sample was determined.

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