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THIN WALL DUCTILE IRON CASTINGS MODELING BY CELLULAR AUTOMATON

机译:薄壁球墨铸铁件的细胞自动机建模

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The mathematical model of the globular eutectic solidification in 2D was designed. The proposed model is based on the Cellular Automaton Finite Differences (CA-FD) calculation method. The model has been used for studies of the primary austenite and of globular eutectic grains growth during the ductile iron solidification in the thin wall casting. The model mentioned above takes into account, among other things, non-uniform temperature distribution in the casting wall cross-section, kinetics of the austenite and graphite grains nucleation, solute diffusion and non-equilibrium nature of the interphase boundary migration. Some aspects of stochastic nature of the solidification processes are taken into account. The results of the CA solidification modeling have been shown, that differences between cooling curves obtained in the same conditions of the casting solidification may be a result of the stochastic nature of the grain nucleation. The results of modeling were compared with the experimental microstructure. The model is well worked for thin walled ductile iron casting, for fast solidification process.
机译:设计了二维球状共晶凝固的数学模型。所提出的模型基于元胞自动机有限差分(CA-FD)计算方法。该模型已用于研究薄壁铸件中球墨铸铁凝固过程中的原始奥氏体和球状共晶晶粒的生长。上述模型尤其考虑了铸件壁截面中的温度分布不均匀,奥氏体和石墨晶粒成核的动力学,溶质扩散和相间边界迁移的不平衡性质。考虑了凝固过程的随机性的某些方面。已经显示了CA凝固模型的结果,在铸造凝固的相同条件下获得的冷却曲线之间的差异可能是晶粒成核的随机性的结果。建模结果与实验组织进行了比较。该模型适用于薄壁球墨铸铁,可快速凝固。

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