Investigation of the Flow Characteristics of Coated Slag during Continuous Casting

Author:

Li Guohui1,Wang Shanjiao2,Du Fengming13

Affiliation:

1. Science and Technology Department, GongQing Institute of Science and Technology, Jiujiang 332020, China

2. Production Test Development, Nanjing Ericsson Panda Communications Co., Ltd., Nanjing 211106, China

3. Marine Engineering College, Dalian Maritime University, Dalian 116000, China

Abstract

During continuous casting, coated slag is applied to molten steel to enhance heat transfer and lubrication. In this study, a numerical calculation model was built to reveal the flowing characteristic of slag according to the fundamental principles of heat transfer and viscous fluid mechanics. The flow and heat transfer behaviour of protective slag on the surface of molten steel and the flow velocity of liquid slag in slag channel gaps were calculated and analyzed. The streaming and thermal conduction situation of slag on the surface of molten steel, as well as the flow velocity of liquid flux in the slag passage gap, were calculated and analyzed. The results showed that as the thickness of the liquidus slag film increased from 10 to 12 mm, the thermal flux density at the top of the flux film layer decreased from 0.1059 to 0.0882 MW/m2. The heat flux density increased rapidly within 0.1 m of the narrow side of the mould, reaching a peak value of 2.27 MW/m2. As the viscosity temperature factor of the flux increased from 0.45 to 2.05, the maximum floating speed of the liquid film from the water inlet to the narrow side in the centre district of the mould decreased from 0.0316 to 0.028 m/s, representing a reduction of approximately 11.4%. This study can provide a reference for the design and improvement of protective slag.

Publisher

MDPI AG

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