The Analysis of the Compositional Uniformity of a Ti-Al Alloy during Electron Beam Cold Hearth Melting: A Numerical Study

被引:0
|
作者
Wang, Yunpeng [1 ]
Xin, Yuchen [1 ]
Gao, Lei [1 ]
Cao, Wei [2 ]
Ma, Chong [2 ]
Guo, Shenghui [1 ]
Chen, Guo [2 ]
机构
[1] Kunming Univ Sci & Technol, Fac Met & Energy Engn, Kunming 650093, Peoples R China
[2] Yunnan Minzu Univ, Key Lab Green Chem Mat Univ Yunnan Prov, Kunming 650500, Peoples R China
基金
中国国家自然科学基金;
关键词
electron beam cold hearth melting; numerical simulation; homogenization; Ti-6wt%Al-4wt%V; TITANIUM SLAB INGOT; EVAPORATION; SEGREGATION;
D O I
10.3390/met14080884
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The electron beam cold hearth melting (EBCHM) process is one of the key processes for titanium alloy production. However, EBCHM is prone to cause elemental volatilization and segregation during the melting of aluminum-containing titanium alloys such as Ti-6wt%Al-4wt%V. To gain deeper insights into the physical and chemical phenomena occurring during the EBCHM process, this paper establishes melting process models for the Ti-6wt%Al-4wt%V titanium alloy in a crystallizer with multiple overflow inlets. It examines the evolution of melt pool morphology, flow dynamics, heat transfer, and mass transfer during the casting process. The results indicate that the design of multi-overflow inlets can effectively suppress the longitudinal development of impact pits within the melt pool, thereby preventing the formation of solidification defects such as leaks in the melt. Concurrently, the diversion effect of multi-overflow inlets significantly enhances the elemental homogeneity within the melt pool. At a casting speed of 20 mm/min and a casting temperature of 2273 K, compared to a single overflow inlet, the design with three overflow inlets can reduce the depth of thermal impact pits within the crystallizer by 132 mm and decrease the maximum concentration difference in the Al element within the crystallizer by 0.933 wt.%. The aforementioned simulation results provide a theoretical basis for the control of metallurgical and solidification defects in large-scale titanium alloy ingots.
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页数:16
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