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Effect of Secondary Cooling Conditions on Solidification Structure and Central Macrosegregation in Continuously Cast High-Carbon Rectangular Billet

机译:二次冷却条件对高碳方坯连铸凝固组织和中心宏观偏析的影响

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Solidification structures of high carbon rectangular billet with a size of 180 mm × 240 mm in different secondary cooling conditions were simulated using cellular automaton-finite element (CAFE) coupling model. The adequacy of the model was compared with the simulated and the actual macrostructures of 82B steel. Effects of the secondary cooling water intensity on solidification structures including the equiaxed grain ratio and the equiaxed grain compactness were discussed. It was shown that the equiaxed grain ratio and the equiaxed grain compactness changed in the opposite direction at different secondary cooling water intensities. Increasing the secondary cooling water intensity from 0.9 or 1.1 to 1.3 L/kg could improve the equiaxed grain compactness and decrease the equiaxed grain ratio. Besides, the industrial test was conducted to investigate the effect of different secondary cooling water intensities on the center carbon macrosegregation of 82B steel. The optimum secondary cooling water intensity was 0.9 L/kg, while the center carbon segregation degree was 1.10. The relationship between solidification structure and center carbon segregation was discussed based on the simulation results and the industrial test.
机译:使用元胞自动机-有限元(CAFE)耦合模型模拟了尺寸为180 mm×240 mm的高碳矩形坯在不同的二次冷却条件下的凝固组织。将模型的适当性与82B钢的模拟宏观结构和实际宏观结构进行了比较。讨论了二次冷却水强度对凝固组织的影响,包括等轴晶比和等轴晶密实度。结果表明,在不同的二次冷却水强度下,等轴晶比和等轴晶密实度沿相反方向变化。将二次冷却水强度从0.9或1.1增加到1.3 L / kg可以改善等轴晶粒的致密性并降低等轴晶粒的比率。此外,还进行了工业测试,以研究不同的二次冷却水强度对82B钢中心碳宏观偏析的影响。最佳二次冷却水强度为0.9 L / kg,而中心碳偏析度为1.10。根据模拟结果和工业试验,讨论了凝固组织与中心碳偏析之间的关系。

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