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首页> 外文期刊>Journal of Materials Processing Technology >Modelling of ingot size effects on macrosegregation in steel castings
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Modelling of ingot size effects on macrosegregation in steel castings

机译:铸锭尺寸对钢铸件宏观测定的建模

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A mixed columnar dendritic-equiaxed three-phase solidification model that considers the secondary dendrite arm spacing (SDAS), nucleation and growth of equiaxed crystals, sedimentation of equiaxed crystals, growth of columnar dendritic trunks, and columnar-to-equiaxed transition (CET) was employed to study the formation of macrosegregation in steel ingots of different sizes. A reported experimental case (55,000 kg ingot) was used to verify the rationality of the current three-phase model. The predicted segregation patterns were in good agreement with the experimental results. The formation of macrosegregation in a series of steel ingots with different sizes (50 kg, 400 kg, 3300 kg, 6000 kg, 25,000 kg, 55,000 kg, and 97,000 kg) was studied using this solidification model. The results showed that the severity of macrosegregation increased with the increasing ingot weight. The thermal-solutal buoyancy and sedimentation of the dendritic equiaxed grains played dominated roles in determining the final segregation patterns in the different ingots. Additionally, the maximum negative segregation increased until the ingot weight exceeded 25,000 kg, which was caused by limited packing of the dendritic equiaxed grains.
机译:一种混合柱状树突状的三相凝固模型,其考虑二态树枝状臂间距(SDA),核心晶体的成核和生长,等轴晶体的沉降,柱状树突树干的生长,以及柱状到等过渡(CET)用于研究不同尺寸的钢锭宏观聚糖的形成。报告的实验案例(55,000公斤锭)用于验证目前三相模型的合理性。预测的分离模式与实验结果很好。使用该凝固模型研究了不同尺寸(50kg,400kg,3300 kg,6000kg,25,000 kg,55,000 kg和97,000 kg)的一系列钢锭的形成。结果表明,随着铸锭重量的增加,宏观测定的严重程度增加。树枝状平衡晶粒的热溶血性浮力和沉降在确定不同锭中的最终隔离模式时起到主导的作用。另外,最大负隔离在铸锭重量超过25,000kg之前增加,这是由树突状等轴的有限包装引起的。

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