首页> 外文会议>International symposium on liquid metal processing amp; casting 2013 >NUMERICAL SIMULATION OF MACROSEGREGATION IN 570-TON LOW-ALLOYED STEEL INGOT
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NUMERICAL SIMULATION OF MACROSEGREGATION IN 570-TON LOW-ALLOYED STEEL INGOT

机译:570吨低合金钢锭宏观偏析的数值模拟

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We developed a numerical analysis code for macrosegregation in large ingots of Fe-C based multi-component alloys. A numerical simulation of macrosegregation in a 570-ton low-alloyed steel ingot was performed using the developed code in 2-dimensional axisymmetric coordinates. The calculated segregation pattern was compared to the macrostructure of the actual ingot to verify the practical effectiveness of the developed code. A solidification-microsegregation model that takes into account both the equilibrium redistribution of carbon and the non-equilibrium redistribution of other elements was formulated and used in this simulation. In the simulation, numerous inverted V segregations formed as was observed in the longitudinal macrostructure of the actual ingot. The computed carbon profile along the centerline of the ingot presents a similar tendency to that of the actual measurement value. The developed code can be applied to the prediction of macrosegregation in large steel ingots.
机译:我们开发了一种用于大块Fe-C基多组分合金中宏观偏析的数值分析代码。使用二维轴对称坐标中开发的代码对570吨低合金钢锭中的宏观偏析进行了数值模拟。将计算出的偏析模式与实际铸锭的宏观结构进行比较,以验证所开发代码的实际有效性。建立了同时考虑碳的平衡再分布和其他元素的非平衡再分布的凝固-微偏析模型,并将其用于此模拟中。在模拟中,在实际铸锭的纵向宏观结构中观察到形成了许多倒V偏析。沿着铸锭中心线计算出的碳分布呈现出与实际测量值相似的趋势。所开发的代码可以应用于大型钢锭中宏观偏析的预测。

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