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Effects of Thermal Gradients and Rotational Flows on Grain Growth in 22 t Steel Ingots

机译:温度梯度和旋转流对22 t钢锭晶粒长大的影响

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摘要

Heavy ingots are widely used in many industrial fields.The coarse grains formed during the process of in-got solidification influence the properties and fracture behaviors of the final products.The coarse grain growth was simulated under different thermal gradients.A 30Cr2Ni4MoV steel ingot was melted in a cubic crucible with dimen-sions of 15 cm×10 cm×23 cm,and the cooling conditions on each side of the crucible were controlled by different thermal curves.The influences of thermal gradients and rotational flows on grain growth in heavy steel ingots were then investigated both numerically and experimentally.The results showed that when the amplitude of the rotation angle was 60°,the metal was solidified under a reciprocating horizontal rotational condition when the angular velocity was 10 (°)/s or 20 (°)/s.As the thermal gradient increased,the lengths of the primary columnar grains in-creased,and the diameters of equiaxed grains decreased.When the direction of flow rotation was perpendicular to the direction of grain growth,the columnar grain zone was nearly eliminated,and the average diameter of equi-axed grains was 0.5 mm.
机译:重型锭广泛用于许多工业领域。在获得的凝固过程中形成的粗粒会影响最终产品的性质和断裂行为。在不同的热梯度下模拟粗粒生长。将30cr2Ni4mov钢锭熔化在具有15cm×10cm×23cm的尺寸坩埚的立方坩埚中,并且坩埚各侧的冷却条件被不同的热曲线控制。热梯度和旋转流量对重型钢锭晶粒生长的影响然后在数值和实验上调查。结果表明,当旋转角度的幅度为60°时,当角速度为10(°)/ s或20(°)/时,在往复水平旋转状态下凝固金属。 S.AS热梯度增加,初级柱状晶粒的长度,并且等轴晶粒的直径减少。当流动旋转方向是暂时的透过晶粒生长的方向,几乎消除了柱状晶粒区,平均轴晶粒的平均直径为0.5mm。

著录项

  • 来源
    《钢铁研究学报(英文版)》 |2016年第9期|973-980|共8页
  • 作者单位

    State Key Laboratory of Advanced Special Steel,School of Materials Science and Engineering,Shanghai University, Shanghai 200072,China;

    State Key Laboratory of Advanced Special Steel,School of Materials Science and Engineering,Shanghai University, Shanghai 200072,China;

    State Key Laboratory of Advanced Special Steel,School of Materials Science and Engineering,Shanghai University, Shanghai 200072,China;

    State Key Laboratory of Advanced Special Steel,School of Materials Science and Engineering,Shanghai University, Shanghai 200072,China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2024-01-26 21:19:17
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