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陈前冲等:高碱度烧结矿矿相结构分布模式及形成机理 ·189· [6]Wang W,Xu W B,Zhu H Y,et al.Analysis of three-dimensional (乔瑞庆,杜鹤桂.低氟烧结矿微气孔的形成机理及对烧结 mineral phase of high basicity sinter.J Iron Steel Res,2016,28 矿强度的影响.钢铁研究学报,1999,11(6):1) (11):6 [13]E BHTMAH,5 H em,IO C IOcoMH,et al.Siderology. (王炜,徐维波,朱航宇,等.高碱度烧结矿的三维矿相特性 Translated by Dong X J,Yang N F.Beijing:Metallurgical In- 分析.钢铁研究学报,2016,28(11):6) dustry Press,1993 [7]Liu L N,Han X L,Liu L.Study on texture of sinter with different (EΦ维格曼,5H热廖宾,OC尤斯芬,等.炼铁学.董学 basicity.Iron Steel Vanadium Titanium,2017,38(2):112 经,杨乃伏,译.北京:治金工业出版社,1993) (刘丽娜,韩秀丽,刘磊.不同类型烧结矿随碱度变化的矿相 [14]Long F.The Effection on fronmaking Raw Materials and Metal- 结构研究.钢铁钒钛,2017,38(2):112) lurgical Process by High Content of AlO Iron Ore Disserta- [8]Liu L N,Han X L,Li Z M,et al.Influence of carbon addition on tion].Wuhan:Wuhan University of Science and Technology, mineralogical structures and metallurgical properties of sinter pre- 2006 pared with fine-grained hematite concentrates.Iron Steel Vanadium (龙防.富A山203矿对炼铁原料及治炼过程的影响[学位论 Titanium,2014,35(2):78 文].武汉:武汉科技大学,2006) (刘丽娜,韩秀丽,李志民,等.配碳量对细粒赤铁精粉烧结 [15]Li G S.Study on Effect Mechanism of Binding Phase to Sinter's 矿矿相结构及治金性能的影响.钢铁钒钛,2014,35(2):78) Strength and Binding Phase's Proper Composition [Dissertation]. [9]Xiao Z X,Hu Z G,Yu S S,et al.Effect of pore structure of sin- Shenyang:Northeastern University,2008 ter ore on sintering strength.Res Iron Steel,2017,45(4):1 (李光森.黏结相对烧结矿强度的影响机理及其合理组分的 (肖志新,胡正刚,余珊珊,等.烧结矿孔洞结构对烧结强度 探讨[学位论文].沈阳:东北大学,2008) 的影响.钢铁研究,2017.45(4):1) [16]Den M,Wang W,Xu R S,et al.Comparative research on mi- [10]Pimenta H P,Seshadri V.Characterisation of structure of iron cro-mechanical properties of vanadium-titanium sinter and ordina ore sinter and its behavior during reduction at low temperatures. ry sinter.Iron Steel Vanadium Titanium,2017,38(2):104 Ironmaking Steelmaking.2002,29(3):169 (邓明,王炜,徐润生,等.钒钛烧结矿和普通烧结矿显微力 [11]Jursova S,Pustejovska P,Brozova S.Study on reducibility and 学性能对比.钢铁钒钛,2017,38(2):104) porosity of metallurgical sinter.Alexandria Eng J,2018,57 [17]Zhang C.Influence of Mineral Composition and Microstructure on (3):1657 the Sinter Quality of Nanjing Steel [Dissertation].Anshan:Uni- [12]Qiao R Q.Du H G.Forming mechanism of pore in sinter with versity of Science and Technology Liaoning,2016 low fluorine and its effect on the sinter strength.J fron Steel Res, (张策.矿物组成及微观结构对南钢烧结矿质量影响的研究 1999,11(6):1 [学位论文].鞍山:辽宁科技大学,2016)陈前冲等: 高碱度烧结矿矿相结构分布模式及形成机理 [6] Wang W, Xu W B, Zhu H Y, et al. 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Ironmaking Steelmaking, 2002, 29(3): 169 [11] Jursova S, Pustejovska P, Brozova S. Study on reducibility and porosity of metallurgical sinter. Alexandria Eng J, 2018, 57 (3): 1657 [12] Qiao R Q, Du H G. Forming mechanism of pore in sinter with low fluorine and its effect on the sinter strength. J Iron Steel Res, 1999, 11(6): 1 (乔瑞庆, 杜鹤桂. 低氟烧结矿微气孔的形成机理及对烧结 矿强度的影响. 钢铁研究学报, 1999, 11(6): 1) [13] E 囟 赜刳卦剞匮剡, 丌 丿 丨刈蒯刳剡, 乩 爻 乩劂劓刳剡, et al. Siderology. Translated by Dong X J, Yang N F. Beijing: Metallurgical In鄄 dustry Press, 1993 (E 囟 维格曼, 丌 丿 热廖宾, 乩 爻 尤斯芬, 等. 炼铁学. 董学 经, 杨乃伏, 译. 北京: 冶金工业出版社, 1993) [14] Long F. The Effection on Ironmaking Raw Materials and Metal鄄 lurgical Process by High Content of Al2O3 Iron Ore [ Disserta鄄 tion]. Wuhan: Wuhan University of Science and Technology, 2006 (龙防. 富 Al2O3 矿对炼铁原料及冶炼过程的影响[学位论 文]. 武汉: 武汉科技大学, 2006) [15] Li G S. Study on Effect Mechanism of Binding Phase to Sinter蒺s Strength and Binding Phase蒺s Proper Composition [Dissertation]. 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