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首页> 外文期刊>International Journal Cast Metals Research >Numerical modelling of macrosegregation and shrinkage in large diameter steel roll castings: a mould study
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Numerical modelling of macrosegregation and shrinkage in large diameter steel roll castings: a mould study

机译:大直径钢辊铸件宏观偏析和收缩的数值模型:结晶器研究

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Minimising macrosegregation and shrinkage defects during uphill teeming of medium carbon roll ingots has always presented a major technical challenge. Process improvements have been achieved by balancing the total heat input of a cast roll and the rate of heat extraction from the roll surface. Injecting dilute alloy through a submerged entry nozzle (SEN) into the net shaped roll ingot further mitigated the undesirable consequences of solute enrichment especially at the ingot centreline. Both the centreline segregation problems and midradius channel segregates can be significantly minimised, by combining these techniques. The objectives of this study are to determine the effect of mould thickness and material type (steel versus cast iron) on the centreline and especially on the midradius segregation, the solidification behavior in the transition region between the outer shell and the diluted interior region, as well as the mould durability. To accomplish these objectives, a multiphase multicomponent computational fluid dynamics (CFD) code was developed for studying the macrosegregation and shrinkage under various casting conditions for a 65 tonne, 1.6 m diameter steel roll processed via SEN. The developed CFD framework consists of solving for the volume fraction of phases (air and steel mixture), temperature, flow and solute balance in multicomponent alloy systems.
机译:在中碳辊铸锭的上坡浇铸过程中,最大程度地减少宏观偏析和收缩缺陷一直是一项重大技术挑战。通过平衡铸轧辊的总热量输入和从轧辊表面提取热量的速率,可以实现工艺改进。通过浸入式喷嘴(SEN)将稀合金注入网状辊锭中,进一步减轻了溶质富集的不良后果,尤其是在锭中心线处。通过结合使用这些技术,可以大大减少中心线偏析问题和中半径通道偏析。这项研究的目的是确定模具厚度和材料类型(钢对铸铁)对中心线的影响,特别是对中半径偏析,外壳和稀释内部区域之间过渡区域中的凝固行为的影响,如以及模具的耐用性。为了实现这些目标,开发了一种多相多组分计算流体力学(CFD)代码,用于研究通过SEN处理的65吨,1.6 m直径钢辊在各种铸造条件下的宏观偏析和收缩。发达的CFD框架包括求解多组分合金系统中相的体积分数(空气和钢混合物),温度,流量和溶质平衡。

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