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Effect of Degassing Treatment on the Interfacial Reaction of Molten Aluminum and Solid Steel

机译:脱气处理对铝液和固态钢界面反应的影响

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Abstract > The gas porosity is one of the most serious problems in the casting of aluminum. There are several degassing methods that have been studied. During smelting of aluminum, the intermetallic compound (IMC) may be formed at the interface between molten aluminum and solid steel of crucible furnace lining. In this study, the effect of degassing treatment on the formations of IMC has been investigated. The rectangular substrate specimens were immersed in a molten aluminum bath. The holding times of the substrate immersions were in the range from 300 s to 1500 s. Two degassing treatments, argon degassing and hexachloroethane tablet degassing, were conducted to investigate their effect on the IMC formation. The IMC was examined under scanning electron microscope with EDX attachment. The thickness of the IMC layer increased with increasing immersion time for all treatments. Due to the high content of hydrogen, substrate specimens immersed in molten aluminum without degasser had IMC layer which was thicker than others. Argon degassing treatment was more effective than tablet degassing to reduce the IMC growth. Furthermore, the hard and brittle phase of IMC, FeAl3, was formed dominantly in specimens immersed for 900 s without degasser while in argon and tablet degasser specimens, it was formed partially.
机译:摘要 >气孔率是铝铸造中最严重的问题之一。已经研究了几种脱气方法。在铝的熔炼过程中,金属间化合物(IMC)可能会在坩埚炉衬的熔融铝和固态钢之间的界面处形成。在这项研究中,已经研究了脱气处理对IMC形成的影响。将矩形基板样品浸入熔融铝浴中。基板浸没的保持时间在300s至1500s的范围内。进行了两种脱气处理,即氩气脱气和六氯乙烷片剂脱气,以研究它们对IMC形成的影响。在具有EDX附件的扫描电子显微镜下检查IMC。对于所有处理,IMC层的厚度均随着浸入时间的增加而增加。由于氢含量很高,浸没在没有脱气机的熔融铝中的基体样品的IMC层比其他的要厚。氩气脱气处理比片剂脱气更有效地减少了IMC的生长。此外,IMC的硬脆相FeAl 3 主要在没有脱气机的情况下浸泡900 s而形成,而在氩气和片剂脱气机的样品中则部分形成。

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