炉顶热制度对大型钢锭宏观偏析严重程度和范围的影响

IF 3.3 Q2 ENGINEERING, MANUFACTURING
Neda Ghodrati, Henri Champliaud, J. Morin, Mohammad Jahazi
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引用次数: 0

摘要

在使用铬钼低合金钢制造的 12 公吨 (MT) 铸锭上,研究了不同热容量的热顶设计对正大偏析和负大偏析分布的影响。三维有限元建模代码 THERCAST® 被用来模拟凝固过程中的相关热机械现象,从填充铸型一直到完全凝固。该模型在工业规模的铸锭上进行了验证,然后用于评估浇铸铸锭装置的关键部件--热顶的热历史的影响。这项评估旨在了解凝固时间、温度和热通量的变化,所有这些都有助于确定宏观偏析的严重程度。结果表明,预热热顶对凝固时间的影响很小,而改变热顶区域的热传导率会使凝固时间增加 31%,从而显著影响宏观偏析模式。本文从控制凝固和大聚集现象动力学的基本机制角度对结果进行了讨论和解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of the Hot-Top Thermal Regime on the Severity and Extent of Macrosegregation in Large-Size Steel Ingots
The influence of hot-top designs with different heat capacities on the distribution of positive and negative macrosegregation was investigated on a 12 metric tonne (MT) cast ingot made using Cr-Mo low-alloy steel. The three-dimensional finite element modeling code THERCAST® was used to simulate the thermo-mechanical phenomena associated with the solidification process, running from filling the mold until complete solidification. The model was validated on an industrial-scale ingot and then utilized to evaluate the influence of the thermal history of the hot-top, a crucial component in the cast ingot setup. This assessment aimed to comprehend changes in solidification time, temperature, and heat flux—all of which contribute to the determination of macrosegregation severity. The results showed that preheating the hot-top had a minor effect on solidification time, while modifications of thermal conductivity in the hot-top region increased the solidification time by 31%, thereby significantly affecting the macrosegregation patterns. The results are discussed and interpreted in terms of the fundamental mechanisms governing the kinetics of solidification and macrosegregation phenomena.
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来源期刊
Journal of Manufacturing and Materials Processing
Journal of Manufacturing and Materials Processing Engineering-Industrial and Manufacturing Engineering
CiteScore
5.10
自引率
6.20%
发文量
129
审稿时长
11 weeks
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