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Hot top design and its influence on feeder channel segregates in 100-ton steel ingots

机译:热顶设计及其对100吨钢锭中给料通道偏析的影响

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摘要

The influence of hot top design on feeder channel segregates (F-CS) and centerline shrinkage porosities (C-SP) were investigated both experimentally and numerically. Two 100-ton 30Cr2Ni4MoV steel ingots with different insulating hot tops were longitudinally sectioned. The experimental results showed few channel segregates but severe shrinkage porosities appeared in the ingot with poorly insulated hot top, while it was the opposite case after the improved hot topping practice. By employing the finite element numerical simulation, the critical condition for the formation of F-CS in 30Cr2Ni4MoV steel was verified to be R~(2.1) G ≤ 1.0 × 10~(-5) ℃ mm~(1.1) s~(-2.1). Through coupling with the published C-SP criterion (GR~(-0.5) ≤ 2.5 ℃ mm~(-1.5) s~(0.5)), it was found out that the increase of hot-top height and preheating temperature would aggravate F-CS while alleviate C-SP contrarily. Hence, to comprehensively control those two defects, the optimum hot-top height and preheating temperature for 100-ton ingot were suggested to be 700 mm and 600 ℃, respectively. Ultimately, the ratio of the solidification time for the whole ingot to the ingot body (t_f/t_b) was proposed as a novel criterion for hot top design. This practical criterion has been successfully utilized to optimize the hot top of a 5-ton steel ingot.
机译:实验和数值研究了热顶设计对给料通道隔离物(F-CS)和中心线收缩孔隙率(C-SP)的影响。纵向截取了两个具有不同绝缘热顶的100吨30Cr2Ni4MoV钢锭。实验结果表明,在绝热隔热不良的铸锭中,通道偏析很少,但出现了严重的收缩孔隙,而在改进热敷工艺后情况恰恰相反。通过有限元数值模拟,验证了在30Cr2Ni4MoV钢中形成F-CS的临界条件为R〜(2.1)G≤1.0×10〜(-5)℃mm〜(1.1)s〜(- 2.1)。通过结合已发布的C-SP标准(GR〜(-0.5)≤2.5℃mm〜(-1.5)s〜(0.5)),发现热顶高度和预热温度的升高会加剧F -CS却相反地减轻了C-SP。因此,为了全面控制这两个缺陷,建议将100吨钢锭的最佳热顶高度和预热温度分别为700 mm和600℃。最终,提出了整个铸锭与铸锭主体的凝固时间之比(t_f / t_b)作为热顶设计的新标准。该实用标准已成功用于优化5吨钢锭的热顶。

著录项

  • 来源
    《Materials & design》 |2015年第15期|205-214|共10页
  • 作者单位

    Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Science, 110016, Shenyang China;

    Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Science, 110016, Shenyang China;

    Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Science, 110016, Shenyang China;

    Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Science, 110016, Shenyang China;

    Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Science, 110016, Shenyang China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hot top design; Feeder channel segregate; Shrinkage porosity; Steel ingot;

    机译:热顶设计;馈线通道隔离;收缩孔隙率;钢锭;

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