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Study of the Effect of Mold Corner Shape on the Initial Solidification Behavior of Molten Steel Using Mold Simulator

机译:模具模拟器模具岩体形状对钢水初始凝固行为的研究

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摘要

The chamfered mold with a typical corner shape (angle between the chamfered face and hot face is 45 deg) was applied to the mold simulator study in this paper, and the results were compared with the previous results from a well-developed right-angle mold simulator system. The results suggested that the designed chamfered structure would increase the thermal resistance and weaken the two-dimensional heat transfer around the mold corner, causing the homogeneity of the mold surface temperatures and heat fluxes. In addition, the chamfered structure can decrease the fluctuation of the steel level and the liquid slag flow around the meniscus at mold corner. The cooling intensities at different longitudinal sections of shell are close to each other due to the similar time-average solidification factors, which are 2.392 mm/s (section A-A: chamfered center), 2.372 mm/s (section B-B: 135 deg corner), and 2.380 mm/s (section D-D: face), respectively. For the same oscillation mark (OM), the heights of OM roots at different positionsud(profile L1 (face), profile L2 (135 deg corner), and profile L3 (chamfered center)) are very close to each other. The average value of height difference (H) between two OMs roots for L1 and L2 is 0.22 mm, and for L2 and L3 is 0.38 mm. Finally, with the help of metallographic examination, the shapes of different hooks were also discussed.
机译:本文将倒角模具具有典型的拐角形状(倒角面和热面和热面之间的角度为45°),并将结果与​​先前发达的直角模具的结果进行了比较模拟器系统。结果表明,设计的倒角结构会增加热阻,削弱模具角周围的二维热传递,从而导致模具表面温度和热通量的均匀性。此外,倒角结构可以降低钢水位的波动和模具角在弯液面周围的液体炉渣。由于类似的时间平均凝固因子,壳体不同的纵向部分的冷却强度彼此靠近,这是2.392 mm / s(AA部分:倒角中心),2.372 mm / s(部分BB:135°角)分别为2.380 mm / s(DD:脸部)。对于相同的振荡标记(OM),OM根在不同位置处的高度 UD(轮廓L1(面),轮廓L2(135°角)和轮廓L3(倒角中心)非常彼此靠近。对于L1和L2的两个OMS根之间的高度差(H)的平均值为0.22mm,对于L2和L3为0.38mm。最后,在金相检查的帮助下,还讨论了不同钩的形状。

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