基于轻重压混合条件下 250 mm × 280 mm Bloom 的均匀化路径:模拟和工业研究

Metals Pub Date : 2024-05-17 DOI:10.3390/met14050591
Aiguo Dang, Mingyue Wang, Haida Wang, Xiaoming Feng, Wei Liu
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引用次数: 0

摘要

本研究基于凝固模拟计算和工业试验,提出了一种新的连铸坯均匀化方法。文中对高碳合金钢(B300A)铸坯在不同工艺条件下的凝固路线进行了理论分析。文中总结了不同欠压工艺参数和欠压效率的变化规律。文中还针对高碳合金钢大方坯连铸中心缩缺陷严重的问题,提出了压力下轻重混合协同控制技术的解决方案。研究表明,高碳钢连铸坯的中心碳偏析指数为 1.05,碳极差不大于 0.08%,比例为 98.4%。此外,中心收缩率不大于 0.5,比例为 99.5%。同时,铸坯的内部质量也得到了改善,可以轧制低固结比的大规格棒材。目前,使用 GB/T4162A 等级进行内部超声波探伤的合格率高于 99.95%,大大降低了工艺成本,提高了连铸连轧的生产效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Homogenization Path Based on 250 mm × 280 mm Bloom under Mixed Light and Heavy Presses: Simulation and Industrial Studies
This study proposed a new method for homogenizing continuous casting blooms based on solidification simulation calculations and industrial tests. The text describes a theoretical analysis of the solidification route of a cast billet of high-carbon alloy steel (B300A) under different process conditions. It summarizes the changing law of different under-pressure process parameters and under-pressure efficiency. The text also presents a solution to the seriousness of center shrinkage defects in the continuous casting of a large square billet of high-carbon alloy steel with the synergistic control technology of mixed light and heavy mixing under pressure. The study indicates that the center carbon segregation index of a high carbon steel continuous casting billet is 1.05, with a carbon extreme difference of not more than 0.08% and a proportion of 98.4%. Additionally, the center shrinkage is not more than a 0.5 level with a proportion of 99.5%. Meanwhile, the internal quality of cast billets has been improved, allowing for the rolling of large-size bars with a low consolidation ratio. The pass rate for internal ultrasonic flaw detection using the GB/T4162A grade is now higher than 99.95%, significantly reducing process costs and improving production efficiency for continuous casting and rolling.
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