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Effect of the Cooling Rate on the Graphite Nodule Count and Size Distribution in Nodular Cast Iron

机译:冷却速率对球墨铸铁中石墨根数和尺寸分布的影响

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摘要

The graphite nodule count, size distribution and homogenization of the nodules distribution are the factor which are of more significance for the properties of the material. By just increasing the inoculants or Mg will not help to get rid of problems like the un-even size distribution and or increasing the nodule count. The cooling conditions of the melt prior to solidification and during solidification can control these two parameters to a large extent. In this research, it is more emphasized on the nucleation sequence of MgO particles and on the cooling rates. The nucleation of MgO at different temperatures and at different cooling rates was found to have a great influence on the nodule size distribution and the homogenization of the microstructure. A mathematical model was derived to relate the Mg concentration in the liquid to the cooling rate, prior to solidification. The MgO particles count was calculated as a function of cooling rate. It was found that at higher cooling rates, MgO can be nucleated in multi steps during cooling process, which can increase the nodule count tremendously.
机译:石墨结节的数量,大小分布和结节分布的均质化是影响材料性能的因素。仅增加孕育剂或镁将无助于消除尺寸分布不均和或增加结核数量等问题。熔体在凝固之前和凝固期间的冷却条件可以在很大程度上控制这两个参数。在这项研究中,它更加强调了MgO颗粒的成核顺序和冷却速率。发现在不同的温度和不同的冷却速率下,MgO的形核对结节尺寸分布和微观结构的均质化有很大的影响。推导了数学模型,将凝固前液体中的Mg浓度与冷却速率相关联。计算出MgO颗粒数作为冷却速率的函数。发现在较高的冷却速率下,MgO可以在冷却过程中分步成核,这可以极大地增加结核数量。

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