首页> 外文会议>TMS(The Minerals, Metals amp; Materials Society) Annual Meeting; 20040314-20040318; Charlotte,NC; US >SIMULATION OF SHRINKAGE AND STRESS IN SOLIDIFYING STEEL SHELLS OF DIFFERENT GRADES
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SIMULATION OF SHRINKAGE AND STRESS IN SOLIDIFYING STEEL SHELLS OF DIFFERENT GRADES

机译:不同等级钢壳凝固过程中的收缩和应力模拟

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Thermal-mechanical behavior of the solidifying shell is important for design of taper and understanding crack formation and other defects during continuous casting of steel. A transient finite-element model, CON2D, has been developed to simulate the evolution of temperature, stress and strain in the solidifying shell during this process. The model features unified elastic-viscoplastic constitutive models for austenite, ferrite, mushy, and liquid steel. The model was validated by simulating an SSCT experiment similar to that of Kurz. CON2D was then applied to investigate the effect of steel grade on thermo-mechanical behavior of a slice domain under realistic heat flux conditions. The shrinkage predicted by CON2D was compared with simpler methods, such as that of Dippenaar. This simple method is found to over-estimate the shrinkage of low carbon steels, where a substantial fraction of soft delta-ferrite exists, but matches reasonably for high carbon steel, containing strong austenite. Implications of the stress and strain profiles in the solidifying steel and practical applications are also discussed.
机译:凝固壳的热机械行为对于锥度的设计以及了解钢的连续铸造过程中的裂纹形成和其他缺陷非常重要。已开发出瞬态有限元模型CON2D,以模拟此过程中凝固壳中温度,应力和应变的变化。该模型具有用于奥氏体,铁素体,糊状和液态钢的统一弹性-粘塑性本构模型。该模型通过模拟与Kurz相似的SSCT实验进行了验证。然后使用CON2D来研究在实际热通量条件下钢种对切片区域的热机械行为的影响。将CON2D预测的收缩率与Dippenaar等较简单的方法进行了比较。发现这种简单的方法高估了低碳钢的收缩率,在低碳钢中存在很大比例的软δ-铁素体,但与含有强奥氏体的高碳钢相当。还讨论了应力和应变曲线在凝固钢中的含义和实际应用。

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