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Experimental and numerical study of the influence of a low-frequency electromagnetic field on the as-cast structure of Horizontal Direct Chill Casting Aluminum Alloy Slab

机译:低频电磁场对水平直冷铸造铝合金板坯铸态结构影响的实验与数值研究

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The influences of low frequency electromagnetic field on the as-cast structure of horizontal direct chill casting aluminum alloy slab were experimental and numerical studied. The results of numerical analysis show that the interaction of the low-frequency electromagnetic field and the melt can generate an electromagnetically induced forced flow in the melt, which, in turn, changes flow pattern and temperature field in the mold. the as-cast structure of slab can be greatly improved by the changes of flow pattern and temperature field. The results of experimental analysis show that the grains of low frequency electromagnetic casting (LFEC) are fine, uniform, equiaxed, rosette-shaped; the surface of the slab of LFEC has no cold shut and less exudations. Moreover, the low-frequency electromagnetic field can improve the distribution of solute elements in the slab. The macrosegregation such as negative segregation and gravity segregation were reduced, which results in the homogenous distributions of the solute elements over the cross-section of the slab.
机译:实验和数值研究了低频电磁场对水平直冷铸造铝合金板坯铸态结构的影响。数值分析结果表明,低频电磁场与熔体的相互作用会在熔体中产生电磁感应的强制流动,进而改变模具中的流场和温度场。流型和温度场的变化可以大大改善铸坯的铸态结构。实验分析结果表明,低频电磁铸造(LFEC)晶粒细小,均匀,等轴,玫瑰状。 LFEC板的表面无冷闭且渗出少。此外,低频电磁场可以改善板坯中溶质元素的分布。宏观偏析(例如负偏析和重力偏析)减少了,这导致了溶质元素在平板横截面上的均匀分布。

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