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Transition of solidification mode and the as-cast γ grain structure in hyperperitectic carbon steels

机译:高包晶碳钢的凝固方式转变和铸态γ晶粒组织。

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摘要

Formation processes of as-cast γ grain structures during casting of hyperperitectic carbon steels with 0.15-0.45 mass% carbon concentrations have been studied by means of a rapid unidirectional solidification technique. In steels with 0.15-0.41 mass% carbon concentrations, coarse columnar γ grains (CCG) with a minor axis diameter of 1-3 mm developed along the direction of temperature gradient. In a steel with 0.38 mass% carbon, importantly, columnar γ grains (CG) whose minor axis diameter is less than 500 μm form before the formation of CCG and the grain structure discontinuously changes from CG to CCG. The fraction of CG region increases with increase in the carbon concentration. In the samples with the carbon concentration higher than 0.43 mass%, the as-cast structure consists of CG over almost the entire ingots. Analyses of a relation between γ grain and dendrite structures and their crystallographic orientations indicate that the formation of CG originates from the primary solidification of γ phase instead of δ phase. This is supported by numerical analysis of the dendrite growths.
机译:通过快速单向凝固技术研究了碳含量为0.15-0.45质量%的高包晶碳钢铸造过程中铸态γ晶粒组织的形成过程。在碳浓度为0.15-0.41质量%的钢中,沿温度梯度方向会出现短轴直径为1-3 mm的粗圆柱γ晶粒(CCG)。重要的是,在碳含量为0.38质量%的钢中,短轴径小于500μm的圆柱状γ晶粒(CG)在CCG形成之前形成,并且晶粒结构从CG不连续地变为CCG。 CG区域的分数随着碳浓度的增加而增加。在碳浓度高于0.43质量%的样品中,铸态结构几乎在整个铸锭上都由CG组成。对γ晶粒和枝晶结构及其晶体取向的关系的分析表明,CG的形成源自γ相而不是δ相的初次凝固。这通过对枝晶生长的数值分析来支持。

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