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Experimental and numerical analysis of effect of cooling rate on thermal–microstructural response of spheroidal graphite cast iron solidification

机译:冷却速度对球墨铸铁凝固过程热-微观结构影响的实验和数值分析

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摘要

This work presents an experimental and numerical study of the solidification process of an eutectic spheroidal graphite cast iron (SGI). The effect of the cooling rate on the thermal–microstructural response is particularly analysed. To this end, experiments as well as numerical simulations were carried out. The experiments consisted in a solidification test in a wedge-like casting such that different cooling rates were measured at specific positions along the part. A metallographic analysis was also performed in five locations of the sample with the aim of obtaining the number and size of graphite nodules at the end of the process. The numerical simulations were made using multinodular based and uninodular based models. These two models predicted similar results in terms of cooling curves and nodule counts. Besides, good experimental–numerical agreements were obtained for both the cooling curves and the graphite nodule counts.
机译:这项工作提出了共晶球墨铸铁(SGI)凝固过程的实验和数值研究。特别分析了冷却速率对热-微结构响应的影响。为此,进行了实验以及数值模拟。实验包括在楔形铸件中进行的固化测试,以便在沿零件的特定位置测量不同的冷却速率。还在样品的五个位置进行了金相分析,目的是在过程结束时获得石墨结节的数量和大小。使用基于多结点和基于单结点的模型进行了数值模拟。这两个模型在冷却曲线和结节数方面预测了相似的结果。此外,冷却曲线和石墨结节数均获得了良好的实验-数值协议。

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