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首页> 外文期刊>Steel Research International >Functional Coatings on Carbon-Bonded Ceramic Foam Filters for Steel Melt Filtration
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Functional Coatings on Carbon-Bonded Ceramic Foam Filters for Steel Melt Filtration

机译:钢熔融过滤碳粘结陶瓷泡沫过滤器上的功能涂层

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Ceramic foam filters (CFFs) have been used by steel foundries for several years as an effective physical refining solution after the ladle treatment. Recently, new approaches involving "active" and "reactive" coatings applied on the filters have been proposed, in order to improve their efficiency during operation. In this work, two different coating methods are presented. The first exploits the reaction of carbon-bonded alumina-magnesia filters when immersed in a steel melt at about 1650 degrees C. In this case, the coating is formed directly during operation: due to the carbothermal reduction of magnesia and dissolution of alumina, in situ spinel formation is observed. This also results in a volume expansion that counteracts the shrinkage of the filter material related to sintering and pyrolysis phenomena. Next, multi-walled carbon nanotubes (MWCNTs) are applied on carbon-bonded alumina filters by means of spray coating to increase the reactivity of the surface. The performance of the coated filters is assessed in comparison to uncoated ones, using a special steel casting simulator under controlled atmosphere. The microscope investigations after 10 and 30 s of immersion indicate a better performance of the MWCNTs-coated filters.
机译:钢代铸造陶瓷泡沫过滤器(CFF)已用几年是钢包处理后有效的物理精炼溶液。最近,已经提出了涉及应用于过滤器上的“活性”和“反应性”涂层的新方法,以提高其在运行期间的效率。在这项工作中,提出了两种不同的涂料方法。首先利用碳键合的氧化铝 - 氧化镁过滤器的反应在约1650℃下浸入钢熔体时。在这种情况下,在操作期间直接形成涂层:由于氧化镁和氧化铝溶解的碳热还原,在观察到原位尖晶石形成。这也导致体积膨胀,抵消了与烧结和热解现象有关的过滤材料的收缩。接下来,通过喷涂涂层将多壁碳纳米管(MWCNTs)施加在碳键合氧化铝过滤器上,以增加表面的反应性。与在受控气氛下的特殊钢铸造模拟器相比,与未涂覆的涂覆过滤器的性能进行评估。浸没10和30秒后的显微镜调查表明MWCNTS涂层过滤器的更好性能。

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