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作 者:Rui-qiang Bai Si-yang Liu Fei-xiong Mao Yuan-yuan Zhang Xin Yang Zhi-jun He
机构地区:[1]School of Materials and Metallurgy,University of Science and Technology Liaoning,Anshan 114051,Liaoning,China [2]Ningbo Key Laboratory of Marine Protection Materials,Ningbo Institute of Materials Technology and Engineering,Chinese Academy of Sciences,Ningbo 315201,Zhejiang,China
出 处:《Journal of Iron and Steel Research International》2022年第7期1073-1079,共7页
基 金:This work was financially supported by the National Natural Science Foundation of China(Grant Nos.51874171 and 51974154);supported by University of Science and Technology Liaoning talents program(601009840-09).
摘 要:The influence of MgO content in slag on wetting and corrosion behavior between slag and MgO–C refractory was investigated.It can be known from the high-temperature wetting experiment that as the MgO content in the slag increases,the final contact angle between the slag and the MgO–C refractory gradually increases and the penetration depth of the slag into the refractory gradually decreases from 60.54μm(when the MgO content is 8%)to 28.11μm(when the MgO content is 12%).The CaO and SiO_(2)in the slag penetrate into the MgO–C refractory along the pores or surface cracks formed by carbon oxidation and react with MgO to generate a large amount of low-melting compound CaO–MgO–SiO_(2),which accelerates the corrosion of the refractory.As the MgO content in slag increases,the viscosity of the slag increases and the fluidity becomes worse,so that the mass transfer and diffusion of molecules or ions in the slag are weakened.In addition,the increase in MgO reduces the activity of FeO in the slag,which inhibits the interfacial chemical reaction,thereby weakening the wetting effect caused by the reaction.
关 键 词:Converter slag MgO–C refractory MgO content WETTING Corrosion
分 类 号:TQ175[化学工程—硅酸盐工业]
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