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Volume 15 Issue 4
Aug.  2008
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Shuying Chen, Guowei Chang, Jianzhong Wang,  and Chunjing Wu, Effects of correlative factors on the interdendritic melt flow brought by the bulge in continuous casting slabs, J. Univ. Sci. Technol. Beijing, 15(2008), No. 4, pp. 407-411. https://doi.org/10.1016/S1005-8850(08)60077-8
Cite this article as:
Shuying Chen, Guowei Chang, Jianzhong Wang,  and Chunjing Wu, Effects of correlative factors on the interdendritic melt flow brought by the bulge in continuous casting slabs, J. Univ. Sci. Technol. Beijing, 15(2008), No. 4, pp. 407-411. https://doi.org/10.1016/S1005-8850(08)60077-8
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Materials

Effects of correlative factors on the interdendritic melt flow brought by the bulge in continuous casting slabs

  • 通讯作者:

    Shuying Chen    E-mail: jinzhouchenshuying@126.com

  • The effects of various factors on the flow speed of interdendritic melt were analyzed in detail in the process of continuous casting slabs. When the solid-liquid interface bends periodically, the expression of solute distribution in the columnar crystal zone was deduced, and the quantitative calculation was also made. The results show that the bulge and the interdendritic spacing are responsible for the flow speed of interdendritic melt. At the initial stage of solidification the bulge operates, and at the final stage the interdendritic spacing operates. The experimental results of macrosegregation in the slabs validated the calculated results of the flow speed of interdendritic melt, which shows that the calculated results are basically consistent with the experimental ones.
  • Materials

    Effects of correlative factors on the interdendritic melt flow brought by the bulge in continuous casting slabs

    + Author Affiliations
    • The effects of various factors on the flow speed of interdendritic melt were analyzed in detail in the process of continuous casting slabs. When the solid-liquid interface bends periodically, the expression of solute distribution in the columnar crystal zone was deduced, and the quantitative calculation was also made. The results show that the bulge and the interdendritic spacing are responsible for the flow speed of interdendritic melt. At the initial stage of solidification the bulge operates, and at the final stage the interdendritic spacing operates. The experimental results of macrosegregation in the slabs validated the calculated results of the flow speed of interdendritic melt, which shows that the calculated results are basically consistent with the experimental ones.
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