首页> 外文会议>International Conference on Modelling of Casting, Welding and Advanced Solidification Processes >Modelling of Columnar-to-Equiaxed and Equiaxed-to-Columnar Transitions in Ingots Using a Multiphase Model
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Modelling of Columnar-to-Equiaxed and Equiaxed-to-Columnar Transitions in Ingots Using a Multiphase Model

机译:使用多相模型模拟柱状到等轴和柱状到柱状过渡的型号

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We present a new method to handle a representative elementary volume (REV) with a mixture of columnar and equiaxed grains in ingot castings in the framework of an Eulerian volume averaged model. The multiscale model is based on a previously established fully equiaxed model. It consists of a three-phase (extra-granular liquid, intra-granular liquid and solid) grain-growth stage coupled with a two-phase (solid and liquid) macroscopic transport stage accounting for grain and nuclei movement. In this context, we take into account the fonnation of a columnar structure and its development using a simplified front-tracking method. Columnar solidification is coupled with the growth of equiaxed grains ahead of the columnar front. The particularity of the model is the treatment of concurrent growth of mixed columnar and equiaxed structures only in the volumes that contain the columnar front. Everywhere else, the structure is considered either fully columnar or fully equiaxed. This feature allows for reasonable computational times even in industrial size castings, while describing the solutal and mechanical blocking phenomena responsible for the Columnar-to-Equiaxed Transition. After a validation of the model, we discuss the numerical results for a 6.2-ton industrial steel ingot by comparison with experimental measurements. Final maps for macrosegregation and grain structures size and morphology are analysed. Furthermore, we quantify the impact of nuclei formation through fragmentation along the columnar front on the result. An attempt at predicting the occurrence of the Equiaxed-to-Columnar Transition in the later phases of the process is also made.
机译:我们提出了一种新的方法来处理具有柱形铸件中的柱状和等式颗粒的混合物在欧拉峰体积平均模型的框架中处理代表性基本体积(Rev)。多尺度模型基于先前建立的完全等均匀的模型。它由三相(颗粒状液体,颗粒状液体和固体)晶粒生长阶段组成,与两相(固体和液体)宏观传输阶段核算谷物和核运动。在这种情况下,我们考虑了使用简化的前跟踪方法的柱状结构的功能及其开发。柱状凝固与柱状前方前方的等轴颗粒的生长相结合。模型的特殊性是仅在含有柱状前沿的体积中的混合柱状和等式结构的同时生​​长的治疗。在其他地方,结构被认为是完全柱状或完全等级的。这种功能允许合理的计算时间,即使在工业尺寸铸造中,也在描述负责柱状到等转换的溶扰性和机械阻挡现象。在验证模型之后,我们通过与实验测量进行比较讨论6.2吨工业钢锭的数值结果。分析了宏观聚集和晶粒结构尺寸和形态的最终地图。此外,我们通过柱状前沿的碎片来量化核形成的影响。还制造了预测过程在该过程的后期阶段中的等式柱转变的发生的尝试。

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