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作 者:马新光 刘曙光 曲硕 王杏娟 郭银星 MA Xin-guang;LIU Shu-guang;QU Shuo;WANG Xing-juan;GUO Yin-xing(College of Metallurgy and Energy,North China University of Science and Technology,Tangshan Hebei 063210,China;Hebei Engineering Research Center of High Quality Steel Continuous Casting,Tangshan Hebei 063000,China;Tangshan Branch of Hegang Co.,Ltd,Tangshan Hebei 063000,China)
机构地区:[1]华北理工大学冶金与能源学院,河北唐山063210 [2]河北省高品质钢连铸工程技术研究中心,河北唐山063000 [3]河钢股份有限公司唐山分公司,河北唐山063000
出 处:《华北理工大学学报(自然科学版)》2022年第1期24-33,共10页Journal of North China University of Science and Technology:Natural Science Edition
基 金:国家自然科学基金资助项目(51974133);河北省自然科学基金资助项目(E2019209543)。
摘 要:为了改善高碱度保护渣的润滑性能,在高碱度(R=1.5,R=1.7)保护渣中添加MgO调节保护渣转折温度,采用旋转黏度计测量保护渣黏温曲线,结合factsage热力学软件物相析出模拟研究MgO对高碱度保护渣转折温度的影响规律。试验结果表明,不同MgO含量对保护渣转折温度有重要影响:R=1.5与R=1.7时,MgO质量分数在2%~4%,转折温度随MgO质量分数增高而降低。当MgO质量分数在6%~10%时保护渣转折温度随MgO质量分数增加而升高;提高碱度后MgO的影响效果降低,当MgO质量分数由2%增加至4%,R=1.5组分的保护渣转折温度降低了95℃,R=1.7组分的保护渣转折温度降低了32℃。MgO质量分数由4%增加至6%,R=1.5组分的保护渣转折温度升高了42℃,R=1.7组分的保护渣转折温度升高了11℃。可以发现,不同含量的MgO对保护渣转折温度的影响也是不一样的。In order to study the influence of MgO on the breaking temperature of mold flux under the condition of high alkalinity(R=1.5,R=1.7).A rotary viscometer was used to measure the viscosity-temperature curve of the mold powder,and combined the phase precipitation with thermodynamic software,the effect of MgO on transition temperature of high basicity casting powder was simulated during the solidification of the mold powder.The results show that different MgO content has an important effect on the breaking temperature of the mold flux:At R=1.5 and R=1.7,The MgO content is between 2%and 6%,and the breaking temperature decreases as the MgO content increases.When the MgO content is between 6%and 10%,the mold flux breaking temperature increases with the increase of MgO content;After increasing alkalinity,the effect of MgO decreases.When the mass fraction of MgO increases from 2%to 4%,the transition temperature of R=1.5 component decreases by 95℃,and that of R=1.7 component decreases by 32℃.The mass fraction of MgO increased from 4%to 6%,the transition temperature of R=1.5 component increased by 42℃,and the transition temperature of R=1.7 component increased by 11℃.
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