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Role of graphite on the corrosion resistance improvement of MgO–C bricks to MnO-rich slag
Affiliation:1. Instituto de Ciencia y Tecnología de Materiales (INTEMA) – CONICET/UNMdP, Av. Juan B. Justo 4302, 7600 Mar del Plata, Argentina;2. Instituto Argentino de Siderurgia (IAS), Av. Central y 19 Oeste, 2900 San Nicolás, Argentina;1. School of Metallurgical and Ecological Engineering, University of Science and Technology Beijing, Beijing, 100083, China;2. State Key Lab of Metastable Materials Science and Technology, Yanshan University, Qinhuangdao, 066004, China;1. College of Materials Science and Engineering, Chongqing University, Chongqing 400044, China;2. Chongqing Key Laboratory of Vanadium–Titanium Metallurgy and Advanced Materials, Chongqing University, Chongqing 400044, China
Abstract:In order to clarify the effect of graphite content on the corrosion behavior of MgO–C refractories immersed in MnO-rich slag, the MgO–C refractory samples bearing 5 wt%, 10 wt% and 15 wt% graphite were prepared, and exposed in the slag composed of 40 wt% CaO, 40 wt% SiO2 and 20 wt% MnO. The results show that metallic Mn particles and (Mg,Mn)O solid solution are formed at the slag/refractories interface. Whereas, no dense layer is formed by (Mg,Mn)O solid solution at the interface. The decrease in MnO content of slag is mainly attributed to the reaction with graphite to form liquid Mn. The graphite is found in the slag, and dissolved in the form of oxidation. The poor wetting limits the contact area of graphite and slag, reducing graphite oxidation and decarburized area. The graphite does not become the passage for slag to penetrate into the refractories due to the oxidation. On the contrary, the dissolution of MgO in slag is faster than graphite, thus is mainly responsible for the degradation of refractories. As a result, MnO and MgO contents change less in the slag contacted with the refractories bearing higher graphite content.
Keywords:MgO-C refractories  Graphite  MnO-Rich slag  Degradation  Oxidation
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