连铸机钢锭冷却的计算机模拟

A. Galkin, V. Pimenov, P. Saraev, D. Tyrin
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引用次数: 1

摘要

研究了连铸装置冷却过程中钢锭温度变化的动力学规律。建立了钢锭冷却的数学模型,包括热传导方程和边界条件。考虑钢锭的二维截面。介绍了通过构建不同时间的热场来模拟铸造过程的软件。该程序可以根据输入的有关钢材、初始温度和断裂间隔的信息,获得连铸单元输出处坯坯切割温度的数据。所有获得的信息都以数字和图形的形式呈现。采用有限元法对数学模型进行求解。分析了影响板坯缺陷产生的因素。当这样一个因素被使用时,钢锭在弯曲和矫直区域的弯曲区域的表面温度的值。如果温度位于给定钢种的脆化温度区域,则缺陷发生的概率很大。通过将铸造过程中几个点的温度测量值与模拟得到的温度值进行比较,进行了充分性研究。研究了不同换热系数计算方法对求解精度的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Computer Simulation of Steel Ingot Cooling in Continuous Steel Casting Unit
The paper studies the dynamics of the temperature change of steel ingot during cooling in a continuous casting unit. A mathematical model of ingot cooling is given, including the equation of heat conduction and boundary conditions. The two-dimensional section of the ingot is considered. The developed software simulating the casting process by constructing a thermal field at different times is presented. This program makes it possible to obtain data on the temperature of the slab cut at the output of the continuous casting unit based on the input information about the steel, initial temperatures and break intervals. All information obtained is presented numerically and graphically. The finite element method is used to solve the equations of the mathematical model. Factors affecting the occurrence of slab defects are also analyzed. As such a factor is used the values of the surface temperatures of the ingot in a curved region in the area of the bend and straightening. If the temperature is located in the zone of embrittlement temperatures for a given steel grade, the probability of occurrence of a defect is significant. The adequacy study was carried out by comparing the measured values of temperatures at several points in the casting process with the values obtained by the simulation. The influence of different methods of heat transfer coefficient on the accuracy of the solution is investigated.
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