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Numerical Simulation of Solidified Stryctyre Formation in Fe-C Alloy Using Cellular Automaton Method

机译:使用蜂窝自动机制法测定Fe-C合金中凝固族抗体形成的数值模拟

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摘要

In the past two decades, several models for predicting the evolution of micro and macrostructures during solidification of alloys have been developed. Monte Carlo (MC) method, cellular automaton (CA) method and phase-field (PF) method have been presented. Many attempts have been carried out to simulate solidification structure formation of alloys using these methods. However, there have been few attempts to simulate solidification structure formation in steel, which is the most widely used material in the world. As this reason, one can consider that, during the solidification of steel, complex phase transformations such as peritectic reaction and subsequent peritectic transformation occur and this phenomenon makes the modeling of solidification structure formation in steel difficult.
机译:在过去的二十年中,已经开发出几十年来,用于预测合金凝固过程中微观和宏观调节的型号。已经提出了Monte Carlo(MC)方法,蜂窝自动机(CA)方法和相场(PF)方法。已经进行了许多尝试以模拟使用这些方法模拟合金的凝固结构。然而,很少有尝试模拟钢的凝固结构形成,这是世界上使用的最广泛的材料。因此,可以考虑,在钢的凝固过程中,发生复杂的相变和随后发生的包层变换,并且这种现象使得钢的凝固结构形成造型难以实现。

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