Title :
Numerical Simulation on Solidification and Heat-Transfer of Continuous Casting of Thin Slab
Author :
Gao, Jingna ; Gao, Ying ; Wang, Ge ; An, Lingjun ; Li, Qiang
Author_Institution :
Coll. of Mater. Sci., Hebei Univ. of Sci. & Technol., Shijiazhuang, China
Abstract :
The process of solidification of continuous casting of thin slab on compact strip production (CSP) was simulated by finite element method (FEM) and two-dimensional cutting slice method. Simulated results of solidification and heat transfer of the slab were gotten. The temperature distribution of the cooling process on the thin casting slab is agreed with the actual online production. Influence of technologic parameters such as pulling speed, superheat and cooling water quantity on temperature distribution was investigated. Solidified thickness at the outlet of the copper mould becomes shorter, temperature of slab becomes falling slower and liquid pool length extends when the pulling speed or superheat rises. While when the cooling water quantity increases, temperature of slab becomes falling faster, liquid pool length shortens, but solidified thickness at the outlet of the mould is hardly affected.
Keywords :
casting; continuous production; cooling; copper; finite element analysis; moulding equipment; slabs; solidification; strips; temperature distribution; 2D cutting slice method; FEM; compact strip production; continuous casting process; cooling process; copper mould; finite element method; heat transfer; numerical simulation; solidification; superheating; temperature distribution; thin casting slabs; Casting; Continuous production; Cooling; Finite element methods; Heat transfer; Numerical simulation; Slabs; Solid modeling; Strips; Temperature distribution; Simulation; Solidification; Thin slab and continuous casting;
Conference_Titel :
Measuring Technology and Mechatronics Automation, 2009. ICMTMA '09. International Conference on
Conference_Location :
Zhangjiajie, Hunan
Print_ISBN :
978-0-7695-3583-8
DOI :
10.1109/ICMTMA.2009.592