会议论文详细信息
9th International Symposium on Electromagnetic Processing of Materials
Electromagnetic particle separation in the cold crucible melting with novel type bottom pouring nozzle
材料科学;物理学
Bojarevics, V.^1 ; Pericleous, K.^1
University of Greenwich, London
SE10 9LS, United Kingdom^1
关键词: Cold crucible melting;    Cold crucibles;    Electromagnetic particle;    Hydrodynamic drag;    Particle dispersion;    Particle tracking;    Transitional flow;    Turbulent fluctuation;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/424/1/012029/pdf
DOI  :  10.1088/1757-899X/424/1/012029
学科分类:材料科学(综合)
来源: IOP
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【 摘 要 】
The cold crucible melting technique is proven to be most effective to obtain reactive metal castings and produce high quality metal powders for aerospace, automotive and medical applications. A weak point of this technology is the graphite/ceramic nozzle used to pour the molten alloy through the bottom opening, which has very limited life time (several minutes) and adds contamination to the high quality final material. The paper uses the mathematical modelling technique, previously validated on multiple similar cases, to investigate a new type of non-consumable nozzle made of copper segments. During the dynamic melting the nozzle entrance is protected by a thin solidifying layer of the same alloy as the main melt. The AC electromagnetic (EM) field effects are investigated for the possibility to extract particles (impurities, precipitates, oxides, bubbles, etc.) from the melt. The dynamics of particles are affected by the hydrodynamic drag, buoyancy, turbulent fluctuations and the EM force via the local pressure distribution. The EM force leads to high mixing rates, transitional flow structures and turbulence of the melt, contributing to the particle dispersion, transport and separation to a desired location. The paper demonstrates effects of flow on the time dependent particle 'swarm' transport and separation to the side solidified 'skull'.
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