Design of nozzle for steel continuous casting system based on flow analysis I -Tundish(TD) upper nozzle-

Author:

MIZOBE Arito1,UEKI Masanori2

Affiliation:

1. Technical Management Dept., Krosaki Harima Corporation

2. Ueki Professional Engineer's Office

Publisher

Japan Society of Mechanical Engineers

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering

Reference11 articles.

1. Halliday, I. M. D., Continuous Casting at Barrow, J. Iron and Steel Inst., Vol 191,No.2 (1959), pp.121-163.

2. Higashitani, K., Yamauchi, K., Matsuno, Y. and Hosokawa, G., Turbulent Coagulation of Particles Dispersed in a Viscous Fluid, J. of Chem. Eng. of Japan (in Japanese), Vol.16,No.4(1983), pp.299-304.

3. Morita, Z. and Adachi, A., A Consideration on Density and Viscosity of Fe-C System Molten Alloys and Their Structural Modification(Structure and Physical Properties of Liquid Metals), Bussei-Kenkyu (in Japanese), Vol 15,No.2 (1970), pp. 64-72.(Compiled in KURENAI: Kyoto University Research Information Repository, https://repository.kulib.kyoto-u.ac.jp/dspace/bitstream/2433/88184/1/KJ00004749025.pdf .)

4. Mukai, K., Tsujino, R., Sawada, I., Zeze, M. and Mizoguchi, S., Effect of Refractory Materials on Inclusion Deposition of Immersion Nozzle in Continuous Casting and Mathematical Modeling of Inclusion Deposition, Tetsu-to-Hagane(J. Iron and Steel Inst. Japan) (in Japanese), Vol. 85,No.4 (1999), pp.307-313.

5. Nakaoka, T., Agglomeration Simulation of Small Inclusion Particles in Molten Steel, R&D Kobe Steel Engineering Reports (in Japanese), Vol.56, No.1 (2006), pp.40-43.

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