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Effect of the Roll Surface Profile on Centerline Segregation in Soft Reduction Process

机译:轧辊表面轮廓对软压下中心线偏析的影响

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This study investigates the effect of roll surface profile on the centerline segregation of the molten metal (bloom) being solidified in the soft reduction process, where the molten metal (bloom) thickness is reduced consecutively by a set of rolls. The roll surface profiles are convex and flat. Finite element analysis was performed to examine the variations in solidus line contour, the phase state across the bloom cross-section and stress state of the bloom in the mushy zone to the casting direction when high carbon bloom (400 mm in thickness and 500 mm in width) was solidified and plastically deformed at the same time. To verify the finite element analysis results, soft reduction test with an actual bloom caster was also carried out. Results reveal that a convex roll surface profile is much more effective than a flat roll surface profile in decreasing the centerline segregation and the internal cracks in the bloom. The convex roll surface profile compresses the mushy zone from both directions (bloom thickness and width) and subsequently compensates efficiently the solidification shrinkage of molten metal. In addition, the convex roll can save energy required in deforming the bloom in the soft reduction process.
机译:这项研究调查了辊表面轮廓对在软压延过程中凝固的熔融金属(水华)的中心线偏析的影响,在该过程中,一组辊连续降低熔融金属(水华)的厚度。轧辊表面轮廓是凸面和平坦的。进行了有限元分析,以检查高碳大方坯(厚度为400 mm,厚度为500 mm时)的大方坯横截面的固相线轮廓变化,大方坯横截面的相态和糊状区大方坯向铸造方向的应力状态。宽度)同时固化并塑性变形。为了验证有限元分析结果,还使用实际的大方坯连铸机进行了轻压下试验。结果表明,在减少中心线偏析和大方坯内部裂纹方面,凸辊表面轮廓比平辊表面轮廓有效得多。凸辊表面轮廓从两个方向(水华厚度和宽度)压缩糊状区域,并随后有效地补偿了熔融金属的凝固收缩。另外,在软压下过程中,凸辊可以节省使大方坯变形所需的能量。

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