Application of Arc Furnace Flue Ash in Casting Heat Insulation Riser

Junjie Zhu, Jian Feng, Ling Liu, Huafang Wang, Jijun Lu
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Abstract

Iron black commonly employs in thermal insulation riser sleeves due to its ability to react with aluminum powder, generating heat. However, the complex production process and unstable composition of iron black lead to high production costs. The potential of using arc furnace flue ash (AFFA) as a complete substitute for iron black and MnO2 and KNO3 oxidizing agents in conventional riser sleeves was investigated in this study. Waste material can be transformed into a valuable resource, while production costs can be reduced by utilizing arc furnace flue ash. The research examined the impact of varying types and amounts of arc furnace flue ash on riser sleeve temperature and holding time by conducting single-factor and orthogonal optimization experiments. The orthogonal optimization experiment determined that the optimum ratio of each oxidant was 6 % arc flue ash, 3 % MnO2 and 6 % KNO3. At this time, the highest temperature was 1512 ℃ and the holding time was 244 s. Results indicated that different types of arc furnace flue ash used as an oxidizing agent demonstrated superior holding capacity and heat generation performance compared to iron black. Additionally, a comparative analysis of factory casting experiments using ductile iron 600-3 (IS) revealed that both arc furnace flue ash and iron black risers effectively countered shrinkage. However, arc furnace flue ash risers exhibited improved mechanical properties, as evidenced by the hardness of the castings.
电弧炉烟道灰在铸造隔热冒口中的应用
由于铁黑能与铝粉发生反应并产生热量,因此通常用于隔热立管套管。然而,铁黑的生产工艺复杂、成分不稳定,导致生产成本居高不下。本研究调查了使用电弧炉烟道灰(AFFA)完全替代传统隔热套管中的铁黑、MnO2 和 KNO3 氧化剂的潜力。利用电弧炉烟道灰可以将废料转化为宝贵的资源,同时降低生产成本。研究通过单因素和正交优化实验,考察了不同类型和数量的电弧炉烟灰对立管套管温度和保温时间的影响。正交优化实验确定每种氧化剂的最佳比例为 6 % 电弧炉烟灰、3 % MnO2 和 6 % KNO3。结果表明,与铁黑相比,不同类型的电弧炉烟道灰作为氧化剂具有更优越的保温能力和发热性能。此外,对使用球墨铸铁 600-3(IS)进行的工厂浇铸实验的对比分析表明,电弧炉烟道灰和铁黑冒口都能有效防止缩孔。不过,电弧炉烟道灰冒口的机械性能有所改善,铸件的硬度就证明了这一点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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