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Modeling of Crucial Process Parameters for the Continuous Improvement of Special Steels at the Stomana Plant

机译:高级钢材持续改进关键工艺参数的建模

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摘要

In this study, a heat transfer model that takes under consideration the micro-segregation phenomena and has been extensively deployed for solidification studies concerning the plant casters is also applied to show the casting speed and superheat effects upon internal soundness. Τhe solidification path of C45R, 42CrMo4, S355 grades was simulated using Thermocalc_(?)and DICTRA software in order to examine the phases formed in crucial process temperature windows for the casting. Coupled Heat Transfer/Simple Micro-Segregation Model software has been deployed to simulate the effect of cooling rate on solidus temperature, and solid fraction during solidification. The solidus temperature results computed by the HT/SM and DICTRA were found to be in good agreement. However, the differences in the predicted solidification fractions may derive from the fact that DICTRA uses an average cooling rate whereas the heat transfer SM model takes into account also the local cooling rates in the solidification progress.
机译:在本研究中,还应用了正在考虑微分离现象的传热模型,并已被广泛地部署用于植物脚轮的凝固研究,以显示出铸造速度和内部声音的过热效应。使用ThermoCalc _(α)和DiCtra软件模拟C45R,42crMO4,S355等级的静音路径,以检查在铸造的关键过程温度窗口中形成的阶段。已经部署了耦合传热/简单的微偏析模型软件以模拟冷却速率对固体温度的影响,并在凝固过程中的固体级分。由HT / SM和DICTRA计算的固体温度结果得到了良好的一致性。然而,预测的凝固级分的差异可能导出DiCtra使用平均冷却速率而传热SM模型也考虑了凝固进展中的局部冷却速率。

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