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Numerical Modelling of Continuous Casting of Steel Accounting for Dendrite Growth Phenomena

机译:钢铁核算综合铸造的数值模型

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The general aim of this work is to calculate the extent of the equiaxed zone in continuously cast steel products. It is known that free equiaxed grains can grow only in undercooled liquid zones. Undercooling of the bulk liquid occurs because the columnar dendrite tips, growing from the mold, reject solutes into the liquid. The temperature front is then lower than the equilibrium liquidus temperature. The specific aim of this contribution is to calculate the thermal and physical state of continuously cast steel long products assuming a columnar solidification mode, but taking into account the tip undercooling at the solidification front. A 2-D heat transfer model has been developed, where a columnar solidification mode is assumed and calculation of the dendrite tip undercooling is coupled with heat transfer. Dendrite arm spacings are calculated in the case of standard and sharp cooling conditions respectively. Numerical results agree with the tendencies observed in earlier experimental works.
机译:这项工作的一般目标是计算连续铸钢产品中等轴区域的程度。众所周知,自由等轴晶粒只能在过冷液态区域中生长。散装液体的过冷发生是因为从模具中生长的柱状枝晶尖端,将溶质溶于液体中。然后将温度前方低于平衡液相温度。这种贡献的具体目的是计算假设柱状凝固模式的连续铸钢长产品的热和物理状态,但考虑到尖端在凝固前面过冷却。已经开发了一种二进制传热模型,其中假设柱状凝固模式并计算树突尖端过冷却与传热耦合。在标准和清晰的冷却条件的情况下计算树枝状臂间距。数值结果同意早期实验工作中观察到的趋势。

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