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ON THE IMPORTANCE OF MODELING 3D SHRINKAGE CAVITIES FOR THE PREDICTION OF MACROSEGREGATION IN STEEL INGOTS

机译:钢锭宏观测定预测建模3D收缩空腔的重要性

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With this work an existing 3-phase mixed columnar-equiaxed solidification model is extend to treat the formation of shrinkage cavity by including an additional phase. In the previous model a mixed columnar and equiaxed solidification approach that considers the multiphase transport phe?nomena (mass, momentum, species and enthalpy) is proposed to calculate the as-cast structure including columnar-to-equiaxed transition (CET) and formation of macrosegregation. In order to incorporate the formation of shrinkage cavity, a supplementary phase, i.e. gas phase or covering liquid slag phase, is considered in addition to the previously introduced 3 phases (parent melt, solidifying columnar dendrite trunks and equiaxed grains). No mass and species transfer between the new phase and the other 3 phases is necessary, but momentum and energy transfer is of critical importance for the formation of the shrinkage cavity and with that the flow and formation of mac?rosegregation would be influenced. Some modelling approaches for the momentum and energy transfer are suggested and tested.
机译:通过这项工作,现有的3相混合柱状凝固凝固模型通过包括另外的阶段来延伸以处理收缩腔的形成。在以前的模型中,考虑多相输送PHE的混合柱状和等型凝固方法是提出了列表(质量,动量,物种和焓),以计算包括柱状到等转型(CET)的铸造结构和形成宏指令格。为了纳入收缩腔的形成,除了先前引入的3相(母体熔体,凝固柱状树枝状树干和等式粗粒)之外,还考虑了辅助相,即气相或覆盖液体渣相。在新阶段和其他3个阶段之间没有质量和物种转移,但动量和能量转移对于形成收缩腔并随着MAC的流动和形成,对MAC的流动和形成是至关重要的。提出和测试了一些势头和能量转移的建模方法。

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