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Prediction of chill formation on solidification of multicomponent cast irons

机译:寒冷地层对多组分铸铁凝固的预测

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Availability of the computer simulation based on the nucleation and growth models have been examined by comparing the results of simulation with those obtained by chill test of the Fe-C-Ni-Si-Cr multicomponent cast iron using a wedge-shape mold. A linear growth model for ledeburite combined with the radial growth model for gray eutectic was introduced and the prediction showed a satisfactory agreement with the observed distribution of chill fraction and chill depth. The graphitizing ability ofsilicon was comparable with the anti-graphitizing effect of chromium on relatively slow cooling, while faster cooling enhanced the graphitizing ability of silicon. It was demonstrated from the results of simulation that silicon equivalent of chromium,given by SE* = (%Si)-(2/3)(%Cr) as a chilling index, showed a good correlation with logarithmic chill depth and logarithmic critical cooling rate for chill formation.
机译:通过使用楔形模具的Fe-C-Ni-Si-Cr多组分铸铁的冷却试验获得的模拟结果,通过使用楔形模具进行了通过冷却试验而获得的基于成核和生长模型的计算机模拟的可用性。 介绍了Ledeburite的线性生长模型与灰色共晶径向生长模型相结合,预测显示了令人满意的令人满意的寒冷分数和冷冻深度的分布。 石墨化能力与铬对相对缓慢缓慢的抗石墨化作用相当,而更快的冷却增强了硅的石墨化能力。 从模拟结果证明了由Se * =(%Si) - (2/3)(%CR)给出的铬作为冷却指数的铬相当,与对数冷却深度和对数临界冷却的良好相关性呈现出良好的相关性 寒冷地层的速度。

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