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Filtration Efficiency of Inclusions in Lightweight FeMnAl Steels

机译:轻质幻线钢中包含夹杂物的过滤效率

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摘要

The efficiency of ceramic foam filters in removing different inclusion populations in a Fe-30Mn-9Al-1Si-0.9C-0.5Mo steel was investigated. A mold design was created utilizing fluid flow and solidification modeling software. The design utilized a common pouring cup attached to two different but balanced gating systems. One runner utilized a ceramic foam filter, while the other runner was unfiltered. Three molds were poured in sequence from a teapot-style ladle. Metallographic samples revealed extensive Al- and Mn-rich oxide bi-films in samples taken before the filter. Samples sectioned after the filter did not contain bi-films. AlN or complex AlN-MnS or AlN-MnO comprised more than 70% of all inclusions. Samples sectioned from the first two molds showed an inclusion removal efficiency of 38% and 39%, respectively. Larger inclusions greater than 3 mu m were more efficiently filtered. The third mold with the greatest number of larger inclusions showed the highest inclusion removal efficiency of 55%.
机译:研究了陶瓷泡沫过滤器在去除Fe-30mN-9AL-1SI-0.9C-0.5MO钢中的不同包涵体中的效率。利用流体流动和凝固建模软件创建模具设计。该设计利用附着在两个不同但平衡的门控系统附接的共同浇注杯。一个跑步者利用陶瓷泡沫过滤器,而另一个跑步者未经过滤。从茶壶式钢包中依次倒入三个模具。金相样品在过滤剂之前揭示了在样品中的广泛的Al-和Mn的氧化物双膜。在过滤器不含双膜后切断的样品。 Aln或复合Aln-Mns或Aln-MnO包含超过70%的夹杂物。从前两个模具切片的样品分别显示出38%和39%的包含去除效率。较大的夹杂物大于3μm,更有效地过滤。具有最大数量较大夹杂物的第三种模具显示出最高的夹杂物去除效率为55%。

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