首页> 外文期刊>Archives of Metallurgy and Materials >APPLYING A NUMERICAL MODEL OF THE CONTINUOUS STEEL CASTING PROCESS TO CONTROL THE LENGTH OF THE LIQUID CORE IN THE STRAND
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APPLYING A NUMERICAL MODEL OF THE CONTINUOUS STEEL CASTING PROCESS TO CONTROL THE LENGTH OF THE LIQUID CORE IN THE STRAND

机译:应用连续钢铸造工艺的数值模型,以控制股线中液体芯的长度

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This paper presents development and the application of a numerical model of the continuous steel casting process to optimise the strand solidification area. The design of the numerical model of the steel continuous casting process was presented and which was developed based on the actual dimensions of the slab continuous casting machine in ArcelorMittal Poland Unit in Krakow. The S235 steel grade and the cast strand format of 220x1280 mm were selected for the tests. Three strand casting speeds were analysed: 0.6, 0.8 and 1 m min(-1). An algorithm was presented, allowing the calculation of the heat transfer coefficient values for the secondary cooling zone. In order to verify the results of numerical simulations, additional temperature measurements of the strand surface within the secondary cooling chamber were made. The ProCAST software was used to construct the numerical model of continuous casting of steel.
机译:本文介绍了连续钢铸造工艺数值模型的开发和应用,以优化绞线凝固面积。 提出了钢连续铸造工艺数值模型的设计,基于克拉科夫的arcelorMittal波兰单位的板坯连续铸造机的实际尺寸开发。 选择S235钢级和220x1280mm的铸串格式用于测试。 分析了三个绞线铸件:0.6,0.8和1 m min(-1)。 提出了一种算法,允许计算二次冷却区的传热系数值。 为了验证数值模拟的结果,制造二次冷却室内的股线表面的额外温度测量。 Procast软件用于构建钢连续铸造的数值模型。

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