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Analysis of Beam Blank Defects and Optimum Control for High Efficient Continuous Casting

机译:高效连续铸造梁空白缺陷分析及最佳控制

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摘要

For the underground of high efficient beam blank CC in Ma'steel, the uppermost beam blank defects which are the longitudinal surface crack and the centerline crack are studied. From the forming mechanism of the two defects, many factors concerned are analyzed. It is found that the properties of mold powder, and the mold cooling technology, and the secondary cooling technology are the main factors of the longitudinal surface crack for beam blank. So the mold powder with low heat transfer velocity and the appropriate cooling technology are adopted. On the other hand, the primary causes to the centerline crack for beam blank are the high sulfur content, and the bad mechanical status of mold and second cooling segment of continuous caster, and the unfitting secondary cooling technology. After the systematic improvement measures carried out, the beam blank quality is improved, the abandon production rate declines 50%, and the first class production rate for casting quality analyzed by macroetch testing gets to 92%, and the second class production rate gets to 98%.
机译:对于MA'STEEL的高效束空白CC的地下,研究了是纵向表面裂纹和中心线裂纹的最上面的光束空白缺陷。从两种缺陷的成形机制来看,分析了许多有关的因素。发现模具粉末的性质和模具冷却技术,以及二次冷却技术是梁坯纵向表面裂缝的主要因素。因此采用具有低传热速度和适当的冷却技术的模具粉末。另一方面,梁坯料中心线裂缝的主要原因是高硫含量,以及连续施法者的模具和第二冷却段的不良机械状态,以及不合格的二次冷却技术。经过系统的改进措施后,梁空白质量得到改善,放弃生产率下降50%,并通过宏观测试分析的铸造质量的第一级生产率得到92%,而第二级生产率得到98 %。

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