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Numerical Analysis on Columnar-to-equiaxed Transition of δ-Ferrite Dendrite in Carbon Steel Induced by Titanium Carbonitride Particles

机译:碳氮化钛颗粒诱导碳钢中δ-铁素体枝晶的柱状转变的数值分析

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Dendrite growth simulations have been performed to analyze Columnar-to-Equiaxed Transition (CET) of δ-ferrite dendrite structure triggered by fine particles of a primary Ti(C, N) crystal. The CET position estimated by Hunt's criterion and the present simulation indicated that the existence of a large number of the Ti(C, N) particles gives rise to the CET of the dendrite structure even in the vicinity of the mold wall under the present casting condition. Furthermore, the capability of the Ti(C, N) leading to the CET was discussed in the light of the different number of Ti(C, N) particles and the different thickness of cast ingot. It was shown that a sufficient number of Ti(C, N) leads to the formation of fully equiaxed dendrite structure irrespective of the ingot thickness.
机译:已经进行了枝晶生长模拟,以分析由初生Ti(C,N)晶体的细颗粒触发的δ-铁素体枝晶结构的柱状到等轴转变(CET)。根据亨特准则和本模拟估算的CET位置表明,即使在当前铸造条件下,即使在模具壁附近,大量Ti(C,N)颗粒的存在也会导致枝晶结构的CET升高。此外,针对Ti(C,N)粒子数量不同和铸锭厚度不同的问题,讨论了导致CET的Ti(C,N)的能力。结果表明,不管铸锭厚度如何,足够数量的Ti(C,N)都会导致形成完全等轴的枝晶结构。

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